TW200935932A - Centralized mobile access point acquisition - Google Patents

Centralized mobile access point acquisition Download PDF

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Publication number
TW200935932A
TW200935932A TW097139117A TW97139117A TW200935932A TW 200935932 A TW200935932 A TW 200935932A TW 097139117 A TW097139117 A TW 097139117A TW 97139117 A TW97139117 A TW 97139117A TW 200935932 A TW200935932 A TW 200935932A
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TW
Taiwan
Prior art keywords
cell
sdl
micro
network
access
Prior art date
Application number
TW097139117A
Other languages
Chinese (zh)
Inventor
Srinivasan Balasubramanian
Manoj M Deshpande
Sanjiv Nanda
Jen Mei Chen
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Qualcomm Inc
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Application filed by Qualcomm Inc filed Critical Qualcomm Inc
Publication of TW200935932A publication Critical patent/TW200935932A/en

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    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W12/00—Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/08—Access security
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W48/00—Access restriction; Network selection; Access point selection
    • H04W48/16—Discovering, processing access restriction or access information
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04J—MULTIPLEX COMMUNICATION
    • H04J11/00—Orthogonal multiplex systems, e.g. using WALSH codes
    • H04J11/0069—Cell search, i.e. determining cell identity [cell-ID]
    • H04J11/0093—Neighbour cell search
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W48/00—Access restriction; Network selection; Access point selection
    • H04W48/18—Selecting a network or a communication service
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W48/00—Access restriction; Network selection; Access point selection
    • H04W48/20—Selecting an access point
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W36/00—Hand-off or reselection arrangements
    • H04W36/0005—Control or signalling for completing the hand-off
    • H04W36/0083—Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
    • H04W36/00835—Determination of neighbour cell lists
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W48/00—Access restriction; Network selection; Access point selection
    • H04W48/08—Access restriction or access information delivery, e.g. discovery data delivery
    • H—ELECTRICITY
    • H04—ELECTRIC COMMUNICATION TECHNIQUE
    • H04W—WIRELESS COMMUNICATION NETWORKS
    • H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/08—Access point devices

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Computer Security & Cryptography (AREA)
  • Databases & Information Systems (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Radio Relay Systems (AREA)

Abstract

Providing for centralized access management to diverse types of mobile network access points is described herein. By way of example, network components can generate a system determination list (SDL) for a user terminal (UT) that is customized to access capabilities of the UT and/or current position of the UT. The SDL can be employed by the UT to determine which network access points to camp on, handoff to, or the like. The network components can include a network database that maintains UT subscriber and related home Femto cell information, or such information can be maintained at a network operator's home location register. In some aspects, the information can be obtained over the air from the UT or from a base station serving the UT.

Description

200935932 九、發明說明: 【發明所屬之技術領域】 以下揭示内容大體而言係關於無線通信,且更具體而言 係關於管理在混合存取點環境中對器件的遠端存取》 根據35 U.S.C. §119規定主張優先權 * 本專利申請案主張以下美國臨時申請案之優先權: . 2007年10月9日所申請之名為"促進存取點基地台之獲取 的系統及方法(SYSTEM AND METHOD TO FACILITATE ❿ ACQUISITION OF ACCESS POINT BASE STATIONS)”的申 請案第60/978,744號; 2007年10月9日所申請之名為"最佳化存取點基地台之獲 取的系統及方法(SYSTEM AND METHOD TO OPTIMIZE ACQUISITION OF ACCESS POINT BASE STATIONS)”的申 請案第60/978,746號;200935932 IX. INSTRUCTIONS: [Technical Field of the Invention] The following disclosure relates generally to wireless communications, and more specifically to managing remote access to devices in a hybrid access point environment. According to 35 USC § 119 stipulates that priority* This patent application claims the following priority of the US provisional application: . The system and method for promoting the access point base station (SYSTEM AND) filed on October 9, 2007 METHOD TO FACILITATE ❿ ACQUISITION OF ACCESS POINT BASE STATIONS)" Application No. 60/978,744; System and Method for Acquisition of "Optimized Access Point Base Station" Applied on October 9, 2007 (SYSTEM) Application No. 60/978,746 of the AND METHOD TO OPTIMIZE ACQUISITION OF ACCESS POINT BASE STATIONS)";

2007年10月9日所申請之名為&quot;促進存取點基地台中較佳 漫遊清單供應的系統及方法(SYSTEM AND METHOD TO ® FACILITATE PREFERRED ROAMING LIST PROVISIONING IN ACCESS POINT BASE STATIONS)&quot;的申請案第 . 60/978,747 號; 2007年10月9日所申請之名為”促進集中式超微型較佳漫 遊清單組態的系統及方法(SYSTEM AND METHOD TO FACILITATE A CENTRALIZED FEMTO PREFERRED ROAMING LIST CONFIGURATION)&quot;的申請案第 60/978,750號;前述 申請案中之每一者讓與給其受讓者且在此以引用之方式明 135136.doc 200935932 確地併入本文中。 參考同在申請中之專利申請案 本專利申請案係關於以下同在申請中之Srinivasan Balasubramanian等人之美國專利申請案”分散式行動存取 點獲取(DISTRIBUTED MOBILE ACCESS POINT ACQUISITION)&quot; [代理人檔案號碼072357U2],與本案同時申請,已讓與給 其受讓者且以引用之方式明確地併入本文中。 【先前技術】 廣泛部署無線通信系統以提供各種類型之通信(例如, 語音、資料、多媒體服務等)至多個使用者。基於預訂之 服務允許使用者經由服務提供者之網路存取及利用各種通 信内容《隨著對高速率及多媒體資料服務之需求快速增 加,存在對於實施具有增強效能之有效且強健通信系統之 挑戰。 由網際網路服務提供者(ISP)供應之傳統固定線路通信系 〇 統(諸如數位用戶線(DSL)、電纜線、撥接或類似網路存取 技術)可供選擇且有時競爭至無線通信之通信平台。然 而’近年來,使用者已開始使用行動通信取代固定線路通 冑。行動通信系統之若干優點(諸如使用者行動性、使用 者設備_之相對較小大小及對公眾交換電話網路以 =路:易存取性)已使得此等系統變得非常便利且因此 統上::隨者使用者已開始更多地依賴行動系統用於傳 =務線路系統獲得之通信服務,對增加的頻寬、 靠服務、向語音品質及低價格的需求提高。 I35136.doc 200935932 除了當前正在使用之行動電話網路之外,已出現一類新 的小基地台。此等小基地台為低功率的,且通常可利用固 定線路通信以與行動營運商之核心網路連接。另外,此等 基地台可為分散式的以用於家、辦公室、公寓、私人遊憩 設施等中的個人/私人用途以提供對行動單元之室内/室外 無線覆蓋。此等個人基地台通常稱為存取點基地台,或者 稱為家用節點B單元(HNB)或超微型小區(Femt〇 ceu)。超 微型小區在行動網路連接性中供應新的範例,其允許用戶 直接控制行動網路存取及存取品質。 【發明内容】 下文呈現一或多個態樣之簡化概要,以便提供對此等態 樣之基本理解。此概要並非所有預期態樣之全面概述,且 並不意欲識別所有態樣之重要或關鍵元素且並不意欲界定 任何或所有態樣之範疇。其目的僅在於以簡化形式呈現一 或多個態樣之某些概念以作為隨後將呈現之更詳細描述的 序言。 本發明提供集中式以及分散式存取管理至相異類型之行 動網路存取點。在一些態樣中,網路組件可產生用於使用 者終端機(UT)之系統判定清單(SDL),該SDL係針對該υτ 之存取能力及/或該υτ之當前位置而定製。該301可由該 UT利用以判定待接於哪些網路存取點上,交遞至哪些網 路存取點等等。該等網路組件可包括維護…用戶及相關 本籍超微型小區資訊之網4資料庫或網路營運商之本籍位 暫存器(HLR)。或者’該資訊可自UT或自一由該UT服務 135136.doc 200935932 之基地台(BS)無線地(over the air,OTA)獲得。 在本發明之其他態樣中,網路存取點管理可由具超微型 能力之UT及/或行動網路之存取點管理,以提供分散式存 取點管理。在超微型小區處,維護之介面應用程式可促進超 微型小區與具超微型能力之υτ之間的通信。在初始加電 . 及/或獲取時,可實施啟動過程以建立超微型小區與超微Application filed on October 9, 2007, entitled "SYSTEM AND METHOD TO ® FACILITATE PREFERRED ROAMING LIST PROVISIONING IN ACCESS POINT BASE STATIONS"&quot; No. 60/978,747; "System and Method TO FACILITATE A CENTRALIZED FEMTO PREFERRED ROAMING LIST CONFIGURATION", which was applied for on October 9, 2007, "SYSTEM AND METHOD TO FACILITATE A CENTRALIZED FEMTO PREFERRED ROAMING LIST CONFIGURATION" Application No. 60/978, 750; each of the aforementioned application is assigned to the assignee and is hereby incorporated by reference in its entirety by reference in its entirety. The present patent application is related to the following patent application Serial No. DISTRIBUTED MOBILE ACCESS POINT ACQUISITION &quot; [Agency File Number 072357U2] of the Srinivasan Balasubramanian et al. At the same time, the application has been given to its assignee and is expressly incorporated herein by reference. [Prior Art] Wireless communication systems are widely deployed to provide various types of communication (eg, voice, data, multimedia services, etc.) to multiple users. Subscription-based services allow users to access and utilize a variety of communication content via the service provider's network. As the demand for high-rate and multimedia data services increases rapidly, there is a challenge to implement an effective and robust communication system with enhanced performance. . Traditional fixed-line communication systems (such as digital subscriber line (DSL), cable, dial-up or similar network access technology) supplied by Internet Service Providers (ISPs) are available and sometimes compete for wireless Communication platform for communication. However, in recent years, users have begun to use mobile communications instead of fixed line communications. Several advantages of mobile communication systems, such as user mobility, relatively small size of user equipment, and the ability to exchange telephone networks with the public: have made these systems very convenient and therefore Top:: The user has begun to rely more on the mobile system for the communication system to obtain the communication service, which increases the demand for increased bandwidth, service, voice quality and low price. I35136.doc 200935932 In addition to the mobile phone network currently in use, a new class of small base stations has emerged. These small base stations are low power and typically utilize fixed line communications to interface with the mobile operator's core network. In addition, such base stations can be used for personal/private use in decentralized homes, offices, apartments, private recreation facilities, etc. to provide indoor/outdoor wireless coverage of the mobile unit. Such personal base stations are commonly referred to as access point base stations, or as home Node B units (HNBs) or ultra-micro cells (Femt〇 ceu). Ultra-micro cells provide a new paradigm in mobile network connectivity that allows users to directly control mobile network access and access quality. SUMMARY OF THE INVENTION A simplified summary of one or more aspects is presented below in order to provide a basic understanding of the aspects. This summary is not an extensive overview of all aspects, and is not intended to identify any important or critical elements of all aspects and is not intended to define the scope of any or all aspects. Its purpose is to present some concepts of the invention in the <RTIgt; The present invention provides centralized and decentralized access management to distinct types of mobile network access points. In some aspects, the network component can generate a System Decision List (SDL) for the User Terminal (UT) that is customized for the access capability of the υτ and/or the current location of the υτ. The 301 can be utilized by the UT to determine which network access points to connect to, which network access points to hand over, and the like. These network components may include maintenance...users and related homes of the micro-cell information network 4 database or network operator's home location register (HLR). Alternatively, the information may be obtained from the UT or from the base station (BS) over the air (OTA) of the UT service 135136.doc 200935932. In other aspects of the invention, network access point management may be managed by an ultra-micro capable UT and/or mobile network access point to provide decentralized access point management. At the picocell, the maintained interface application facilitates communication between the femtocell and the ultra-miniature capability. At initial power up and/or acquisition, a boot process can be implemented to establish a picocell and AMD

' 型UT之間的連接。啟動過程可由超微型小區利用以向UT 供應將超微型小區建立為特定地理區域(GEO)或本籍GEO 内之咼優先權存取點的SDL。因此,當超微型υτ在本籍 GEO内時,UT更可能獲取、待接至超微型小區上及/或^ 遞至超微型小區。當在本籍GE〇外部時,行動網路可向超 微型υτ無線地供應適合於非本籍GE〇區域之定製SDL,其 將非超微型小區建立為較高優先權存取點。 在本發明之一些態樣中,提供一種促進對行動網路之遠 端存取的方法。該方法可包含獲得11丁特定資訊,及利用 ❿ 該UT特定資訊判定該UT之存取能力。另外,該方法可包 含基於該UT之存取能力產生用於在全異類型之存取點之 間進行選擇的定製SDL。 根據其他態樣,揭示一種促進對行動網路之遠端存取的 &quot; 裝置。該裝置可包含:通信處理器,其經由與服務於該 UT之基地台(BS)之資料鏈路或與該υτ之無線鏈路獲得。丁 特定資訊;及資料剖析器,其利用該υτ特定資訊判定該 UT之存取能力。此外,該裝置可包含—SDL模組,該SDL 模組基於該υτ之存取能力產生用於在全異類型之存取點 135136.doc 200935932 之間進行選擇的定製SDL。 在或多個其他態樣中,提供一種經組態以促進對行動 網路之遠端存取的裝置。該裝置可包含用於獲得υτ特定 貝汛的構件及用於利用該υτ特定資訊判定該υτ之存取能 力的構件。另外,該裝置可包含用於基於該υτ之存取能 力產生用於在全異類型之存取點之間進行選擇的定製SDL 的構件》 根據其他態樣,提供一種經組態以促進對行動網路之遠 端存取的處理器。該處理器可包含經組態以獲得υτ特定 貝訊的第一模組及經組態以利用該υτ特定資訊判定該 之存取能力的第二模組。此外,該處理器可包含經組態以 基於該UT之存取能力產生用於在全異類型之存取點之間 進行選擇的定製SDL的第三模組。 在至少一額外態樣中,揭示一種包含電腦可讀媒體之電 腦程式產品。該電腦可讀媒體可包含用於使一電腦獲得 UT特定資訊的第一組程式碼及用於使該電腦利用該特 定資訊判定該UT之存取能力的第二組程式碼。此外,該 電腦可讀媒體可包含用於使該電腦基於該υτ之存取能力 產生用於在全異類型之存取點之間進行選擇的定製SDL的 第三組程式碼。 根據本發明之額外態樣,提供一種用於選擇對行動網路 之存取點的方法。該方法可包含將包含UTID之網路註冊 請求提交至該行動網路之小區,及獲得針對該UT ID而組 態之定製SDL,該定製SDL基於該UT之特性建立一較佳類 I35136.doc 200935932 型之存取點。此外,該方法可包含在該小區不為一較佳小 區或為一非較佳小區之情況下利用該定製SDL搜尋鄰近小 區。 在額外態樣中,提供一種經組態以用於選擇對行動網路 之存取點的UT。該UT可包含:通信處理器,其將包含υτ ID之網路註冊請求提交至該行動網路之小區;及接收器, 其獲得針對該UT ID而組態之定製SDL,該定製SDL基於該 υτ之特性建立一較佳類型之存取點。此外,該υτ可包含 一基地台再選擇模組,該基地台再選擇模組在該小區不為 一較佳小區或為一非較佳小區之情況下利用該定製SDL搜 尋鄰近小區。 除前述之外,揭示一種經組態以用於選擇對行動網路之 存取點的裝置。該裝置可包含用於將包含17丁 1〇之網路註 冊請求提交至該行動網路之小區的構件及用於獲得針對該 UT ID而組態之定製SDL的構件,該定製SDL基於該^^之 特性建立一較佳類型之存取點。此外,該裝置可包含用於 在該小區不為一較佳小區或為一非較佳小區之情況下利用 該定製SDL搜尋鄰近小區的構件。 根據或多個其他態樣,揭示一種經組態以在行動網路 之存取點中進行選擇的處理器。該處理器可包含:第一模 組,其將包含UT ID之網路註冊請求提交至該行動網路之 小區,及第二模組,其獲得針對該UT ID而組態之定製 SDL,該定製SDL基於該UTi特性建立一較佳類型之存取 點。此外,該處理器可包含第三模組,該第三模組在該小 135136.doc • 11 - 200935932 £不為-較佳小區或為_非較佳小區之情況下利 SDL搜尋鄰近小區。 &lt;在至少一額外態樣中’揭示一種包含電腦可讀媒體之電 腦程式產品。該電腦可讀媒體可包含:第-組程式碼,其 帛於使一電腦將包含UT ID之網路註冊請求提交至行動網 路之J區,及第一組程式瑪,其用於使該電腦獲得針對該 . UT ID而組態之定製SDL,該定製SDL基於該υτ之特性^ ❿ Α—較佳類型之存取點。此外’該電腦可讀媒體可包含一 第三組程式碼,該第三組程式碼用於使該電腦在該小區不 為一較佳小區或為-非較佳小區之情況下利用該定製飢 搜尋鄰近小區》 為實現前述及相關目的’該—或多個態樣包含將於下文 充分描述並在申請專利範圍中特別指出之特徵。以下描述 及隨附圖式詳細陳述該一或多個態樣中之某些說明性態 樣。然而,此等態樣僅指示可利用各種態樣之原理之各種 Q $式中之少數方式,且所描述之態樣意欲包括所有該等態 樣及其等效物。 【實施方式】 現參看圖式描述各種態樣,其中相同參考數字在全文中 用於指代相同元件。在以下描述中,$了解釋之目的,陳 述眾多特定細節以提供對一或多個態樣之徹底理解◦然 而,顯然可在無此等特定細節之情況下實踐此(等)態樣β 在其他例子中,以方塊圖形式展示熟知結構及器件以便促 進描述一或多個態樣。 135136.doc •12· 200935932 另外,本發明之各種態樣在下文中描述。應顯而易見, 本文中之教示可以多種形式具體化且本文中所揭示之任何 特定結構及/或功能僅為代表性的。熟習此項技術者將基 於本文中之教示而瞭解,本文中所揭示之態樣可獨立於任 何其他態樣來實施,且此等態樣中之兩者或兩者以上可以 . 各種方式進行組合。舉例而言,可使用本文中所陳述之任 . 何數目之態樣實施一裝置及/或實踐一方法。另外,可使 用除了或不同於本文中所陳述之態樣中之一或多者的其他 ® 結構及/或功能性實施一裝置及/或實踐一方法。作為一實 例,本文描述之許多方法'器件、系統及裝置係在於一包 含全異類型存取點之行動環境中實施改良之網路存取的上 下文中描述。熟i此項技術者應瞭解,類似技術可應用於 其他通信環境。 對通信網路之無線存取點之開發已為經供應以實現傳統 無線通信系統與傳統固定線路通信系統之間的聚合的一種 Φ 解決方案。聚合(另外稱為固定-無線聚合)涉及固定線路網 路(例如,企業内部網路、網際網路等)與行動通信網路(例 如’蜂巢式電話網路)之間的可交互性之程度。基地台 ‘ (BS)提供對行動通信營運商之網路的無線存取,該等網路Connection between type UTs. The boot process may be utilized by the femtocell to provide the UT with an SDL that establishes the femto cell as a priority access point within a particular geographic area (GEO) or in the home GEO. Therefore, when the ultra-micro υτ is in the home GEO, the UT is more likely to acquire, be connected to the picocell and/or to the picocell. When outside the home GE, the mobile network can wirelessly provision a custom SDL suitable for the non-native GE〇 area to the ultra-micro υτ, which establishes the non-pico cell as a higher priority access point. In some aspects of the invention, a method of facilitating remote access to a mobile network is provided. The method can include obtaining 11 specific information and determining the access capability of the UT using the UT specific information. Additionally, the method can include generating a custom SDL for selecting between disparate types of access points based on the access capabilities of the UT. According to other aspects, a &quot; device that facilitates remote access to a mobile network is disclosed. The apparatus can include a communications processor that is obtained via a data link with a base station (BS) serving the UT or with a wireless link to the υτ. And a data parser that uses the 特定τ specific information to determine the access capability of the UT. In addition, the apparatus can include an SDL module that generates a customized SDL for selection between disparate type access points 135136.doc 200935932 based on the access capability of the υτ. In one or more other aspects, an apparatus configured to facilitate remote access to a mobile network is provided. The apparatus may include means for obtaining a specific 汛 of the υτ and means for determining the accessibility of the υτ using the 特定τ specific information. Additionally, the apparatus can include means for generating a customized SDL for selection between disparate types of access points based on the access capability of the 》τ. According to other aspects, a configuration is provided to facilitate A remote access processor for the mobile network. The processor can include a first module configured to obtain a 特定τ-specific broadcast and a second module configured to determine the access capability using the 特定τ specific information. In addition, the processor can include a third module configured to generate a customized SDL for selection between disparate types of access points based on the access capabilities of the UT. In at least one additional aspect, a computer program product comprising a computer readable medium is disclosed. The computer readable medium can include a first set of code for causing a computer to obtain UT specific information and a second set of code for causing the computer to determine the access capabilities of the UT using the particular information. Moreover, the computer readable medium can include a third set of code for causing the computer to generate a customized SDL for selection between disparate types of access points based on the access capability of the computer. In accordance with additional aspects of the present invention, a method for selecting an access point to a mobile network is provided. The method can include submitting a network registration request including a UTID to a cell of the mobile network, and obtaining a customized SDL configured for the UT ID, the customized SDL establishing a preferred class I35136 based on characteristics of the UT .doc 200935932 access point. Moreover, the method can include searching for neighboring cells using the customized SDL if the cell is not a preferred cell or a non-preferred cell. In an additional aspect, a UT is provided that is configured to select an access point to a mobile network. The UT can include a communication processor that submits a network registration request including the IDτ ID to a cell of the mobile network, and a receiver that obtains a customized SDL configured for the UT ID, the customized SDL A preferred type of access point is established based on the characteristics of the υτ. In addition, the υτ may include a base station reselection module, and the base station reselection module searches for the neighboring cell by using the customized SDL if the cell is not a preferred cell or a non-preferred cell. In addition to the foregoing, an apparatus configured to select an access point to a mobile network is disclosed. The apparatus can include means for submitting a network registration request including 17 〇1 to a cell of the mobile network and means for obtaining a customized SDL configured for the UT ID, the customized SDL based The feature of the ^^ establishes a preferred type of access point. Moreover, the apparatus can include means for searching for neighboring cells using the customized SDL if the cell is not a preferred cell or a non-preferred cell. According to one or more other aspects, a processor configured to select among access points of a mobile network is disclosed. The processor can include: a first module that submits a network registration request including a UT ID to a cell of the mobile network, and a second module that obtains a customized SDL configured for the UT ID, The custom SDL establishes a preferred type of access point based on the UTi characteristics. In addition, the processor may include a third module that searches for neighboring cells in the case where the small 135136.doc • 11 - 200935932 £ is not a preferred cell or a non-better cell. &lt;In at least one additional aspect&apos; discloses a computer program product comprising a computer readable medium. The computer readable medium can include: a first set of code for causing a computer to submit a network registration request including a UT ID to a J zone of the mobile network, and a first set of programs for making the The computer obtains a custom SDL configured for the .UT ID, which is based on the characteristics of the ^ ^ 较佳 - the preferred type of access point. Furthermore, the computer readable medium can include a third set of code for enabling the computer to utilize the customization if the cell is not a preferred cell or a non-preferred cell. Hungry Search for Neighboring Communities To achieve the foregoing and related ends, the <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; Some of the illustrative aspects of the one or more aspects are described in the following description and the accompanying drawings. However, such aspects are indicative of only a few of the various <RTIgt; </ RTI> </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; [Embodiment] Various aspects are now described with reference to the drawings, wherein the same reference numerals are used to refer to the same elements throughout. In the following description, for the purposes of explanation, numerous specific details are set forth to provide a thorough understanding of one or more aspects. In other instances, well-known structures and devices are shown in block diagram form in order to facilitate describing one or more aspects. 135136.doc • 12· 200935932 In addition, various aspects of the invention are described below. It should be apparent that the teachings herein may be embodied in a variety of forms and that any specific structures and/or functions disclosed herein are merely representative. Those skilled in the art will understand from the teachings herein that the aspects disclosed herein can be implemented independently of any other aspect, and that two or more of these aspects can be combined in various ways. . For example, a device can be implemented and/or practiced using any number of aspects set forth herein. In addition, a device and/or a method of practice may be implemented using other &lt;RTI ID=0.0&gt;&gt;&gt; As an example, many of the methods, devices, and devices described herein are described in the context of implementing improved network access in an action environment that includes disparate types of access points. Those skilled in the art should be aware that similar techniques can be applied to other communication environments. The development of wireless access points for communication networks has been a Φ solution that is being supplied to enable aggregation between conventional wireless communication systems and conventional fixed line communication systems. Aggregation (also known as fixed-wireless aggregation) involves the degree of interactivity between fixed-line networks (eg, intranets, the Internet, etc.) and mobile communication networks (eg, 'cellular cellular networks') . Base station ‘ (BS) provides wireless access to the mobile communication operator’s network, such networks

諸如電路交換語音網路(例如,分碼多重存取[CDMA] i-X 或CDMA IX網路)、經組合之電路交換與封包交換語音及 資料網路(例如’ CDMA演進資料最佳化[EV-DO]網路)或所 有封包《。曰及資料網路(例如,長期演進[lte]網路)或其類 似者。存取點BS(在本文中替代地稱為Bs)之實 例包括具有 135136.doc 200935932 包括巨集小區、微型小區(micro ceU) '微型小區(pic〇 cell)、超微型小區等之各種傳輸功率/小區大小的節點 B(NB)、基地收發台(BTS)家用節點b(hnb),或簡稱Bs。 各種類型存取點BS至傳統巨集BS網路之引入致能對此 等網路之個人存取上之顯著靈活性及消費者控制。使用者 可常常組態終端機器件以視哪一者提供較佳信號而選擇相 鄰存取點BS或巨集網路BS。另外,至少在一些狀況下, 與巨集網路相比,存取點BS可提供較佳的費率計劃,從而 使得使用者能夠減少使用費。 然而,因為典型巨集網路常常經部署用於如主要市場之 大規模公共用途’所以室内接收常常可能弱於室外接收 (例如,歸因於建築物、絕緣體、地面景觀等對射頻信號 之吸收)’從而使得在此環境中行動器件不如固定線路電 腦有效。然而,在此環境中存取點BS可提供顯著改良。作 為實例’超微型小區技術向使用者提供在室内及室外之 對個人無線連接性之顯著控制,從而常常消除大多數或所 有此等連接性問題。因此,超微型]33可甚至在用於巨集網 路之次佳環境中進一步擴展UT行動性。 儘管超微型BS及其他存取點部署具有顯著優點,但由於 在將超微型BS與營運商之巨集網路耦接上添加的複雜性而 已導致一些問題。舉例而言,存取點部署(尤其在超微型 小區之狀況下)通常為未計劃或半計劃的,此意謂此等BS 不受網路營運商之控制而安裝。因此,營運商具有有限能 力來實施此等存取點相對於其他此等存取點或相對於巨集 135136.doc -14· 200935932 BS的理想置放。此外,可能嚴格限制無線信號相對於其他 超微型小區之空間成形或甚至對此等小區之位置的精確瞭 解。另外,在超微型BS部署對消費者購買及安裝開放的情 況下,在高人口城市或商業區可發生此等小區之非常密集 的安裝,從而引起相鄰超微型及巨集小區之間的無線資源 競爭。此外,超微型BS可與封閉用戶群(CSG)相關聯且僅 對CSG之成員提供網路存取;在此狀況下存取不提供給(例 如)通用蜂巢式公眾。因此,巨集網路中之超微型部署將 受限存取(RA)BS與通用存取(ga)BS整合。 許多舊版UT不具備區分(3入與11八BS的能力,尤其在此 等兩種BS均利用蜂巢式頻率時,且因此可能花費顯著功率 來搜尋及嘗試存取拒絕為UT服務的RA BS。另外,舊版終 端機及舊版無線網路連接標準需要行動終端機掃描傳入之 無線信號以識別最佳信號。在僅存在終端機可區分之少數 相鄰BS之情況下’此通常為可實行過程。然而,在密集存 取點部署中,$十或幾百個存取料能存在於附近(例 如,在大城市公寓樓中”若υτ之本籍存取點(具有包括 UT之^SG)在密集部署内,則自幾百或幾千個緊密地定位 2外籍存取點區分本籍存取點可為一顯著問冑。舉例而 言,UT可能利用顯著功率來待接於(分析導頻及控制頻道) 將拒絕對UT之網路存取之外籍存取點上或發信號給將拒 絕對UT之網路存取之外籍存取點。 在UT不在包括本籍存取點之區域中之情況下(或例如, UT不具有對超微細之作用t預訂之情況下),問題變成 I35I36.doc 200935932 區分RA BS與通用存取(GA)BS及忽略RA Bs。另外,雖然 超微型BS可與巨集網路部署於單獨頻率上,但在一些狀況 下,超微型小區與巨集小區共用一或多個網路頻率,且因 此不可如此容易地區分。因此,存在區分超微型BS與巨集 網路BS之需要。另外,當不可能發現本籍BS時,限制υτ 發信號至RA BS可為有益的。此外,在預期將發現本籍Bs ' 之情況下增加發信號給或搜尋RA BS之可能性且減輕至外 籍超微SBS之發信號可為有益的。本發明之態樣可提供對 ® 許多前述問題之改良。 為解決一些前述及類似問題,本發明提供行動網路參數 化以用於對混合巨集與超微型小區存取網路之使用者終端 機存取。可利用參數化將UT導引至一或另一類型之小 區、頻道或其類似者以改良UE將發現較佳小區(若適用)或 忽略非較佳小區的可能性。在一些實施中,對於所有超微 型小區保留與巨集網路系統識別符(SID)分離之超微型 ❹ SID。因此,傳輸超微型SID之超微型小區可藉由接收終端 機與巨集BS相區分。另外,將不同網路ID或節點id(Nid) 指派給超微型網路之每一超微型小區。在一些態樣中,例 如在需要NID再使用之情況下,可進一步將小區ID指派給 - 每一超微型小區,其可視情況包含基於額外資料(諸如用 戶之實體位址、行動台識別符(MSI)或國際MSI(IMSI)或其 類似者)而修改之NID。因此,藉由將SID/NID/小區包括 於所傳輸信號中,超微型BS可與巨集BS相區分,且與其 他超微型BS相區分》 、 135136.doc •16· 200935932 因此,例如,可利用上文提出之參數化基於超微型 SID/NID及(視情況)小區ID將具超微型小區能力2ϋτ朝向 相鄰超微型小區或朝向由超微型小區利用之頻道導引。該 參數化可將本籍超微型小區識別為較佳或高優先權網路存 取點。若超微型UE偵測到由本籍超微型小區傳輸之無線 佗號則較佳或南優先權狀態可使超微型UT獲取此小 • 區,或在已待接於另一網路小區之情況下交遞至此小區。 若超微SUT當前未待接於本籍超微型小區上,則υτ可週 期性地搜尋相鄰小區以發現較佳超微型小區。 在本發明之一些態樣中,可將第二參數化提供至不具超 微型能力之UT或巨集UT,從而導引此等終端機遠離超微 型小區或朝向巨集小區或兩者。若超微型小區與巨集小區 共用共同頻道或載波,則參數化可將巨集小區建立為相對 於超微型小區之較佳或高優先權小區。此相對優先權可使 巨集UT優於超微型小區而選擇巨集小1,或使巨集町在 Φ 肖接於超微型小區上時週期性地搜尋巨集小區。若超微型 J區及巨集小區部署於單獨頻道上,則參數化可排除超微 型小區資料,從而使巨集υτ忽略由超微型小區起始之信 •豸。在本發明之至少—些態樣中,參數化可包含視情況根 • 纟周路之特定地理區域或存取/言主冊區域建立小區優先權 之系統判定清單(SDL’見下文)(例如,較佳漫遊清單)。 因此,巨集UT及具超微型能力之⑽可視情況視υτ位置(見 下文)而經選擇性地供應以增加獲取特定類型小區之可能 135136.doc -17· 200935932 根據其他態樣’朝向或遠離特定類型小區導引υτ可基 於υτ當前位於其中之地理區域(GE0)而實施。舉例而言, 若具超微型能力之UT在本籍超微型小區定位於其中之GE〇 内’則可提供將超微型υτ導引至較佳超微型小區的網路 參數化(例如,SDL)。另外或其他,參數化可根據當前 GEO指定小區優先權。因此,在本籍GE〇内,參數化可將 ^ 超微型小區指定為與其他小區(諸如巨集小區)相比具有相 對較咼優先權之小區。另一方面,當超微型UT在非本籍 GEO中時,可給予超微型小區最低優先權。以此方式,當 UT在GEO之間行進時,參數化組將不需要由網路更新。在 任一狀況下,相對小區優先權可根據超微型υτ*否可預 期基於超微型UT所位於其中之當前GE0來發現本籍超微型 小區而建立。 基於UT能力及/或UT位置向υτ供應合適參數化可以各種 適合方式實施。在至少一態樣中,可在行動網路處維護超 ❷ 微型資料庫(包含UT特定資訊)。當一 1;丁嘗試註冊於一小 區上時,可將識別UT之資訊提供至網路。網路可接著判 定該UT是嘗試註冊於巨集小區上還是超微型小區上,且 ’ 在後種狀況下’判定超微型小區是本籍小區(在其上授權 UT存取行動網路)還是外來小區(在其上未向υτ㈣此存 取)。若UT註冊於巨集小區上,則參數化可無線地⑴ΤΑ)發 送至υτ(例如,自巨集小區或相鄰超微型小區)’從而增加 UT將搜尋及獲取超微型小㈣可能性(視情況取決於在本 籍GEO内之UT)。若听註冊於外來超微型小區上,則可將 135136.doc •18. 200935932 不同參數組提供至υτ,從而導引UT以搜尋其他超微型小 區、搜尋其他頻率、搜尋巨集小區或其組合。若υτ註冊 於本籍超微型小區上’則可將第三參數化提供至UT,從 而增加UT將保持在本籍超微型小區上之可能性(例如,藉 由產生高臨限值,高於該臨限值υτ搜尋或交遞至其他小 區)。 根據其他態樣,當υτ註冊於一小區上時,參數化可基 於UT資訊動態地實施。在此等態樣中,可將卩丁特定資訊 提供至行動網路,其可產生或更新用於UT之定製系統判 定清單(SDL)(例如,推薦漫遊清單[PRL]或其類似者)。定 製SDL可視UT是否具超微型能力,或視情況視υτ當前位 於何GEO而包括當適參數化。1;丁特定資訊、當前GE〇資訊 及本籍GEO資訊(使用其動態地組態SDL)可以各種適合方 式獲得。在至少一態樣中,UT資訊及本籍GEO可自由UT 之行動營運商維護之營運商目錄(例如,本籍位置暫存器 [HLR]或類似器件)獲得。在其他態樣中,可儲存此資 訊且隨註冊請求而提供該資訊。在其他態樣中,使用者可 手動地將資訊輸入至UT上(例如,藉由撥服務號碼且包括 UT特定資訊),其可藉由註冊而上載或在上行鏈路頻道上 發送至行動網路❶一旦網路接收到UT特定資訊,動態sdl 可產生且無線地發送至UT。 作為别述之替代,可利用一啟動程序以在超微型UT與 本籍超微型小區成對或建立與本籍超微型小區之初始組態 時產生專用啟動SDL。超微型小區可在其加電且連接至 135136.doc -19· 200935932 行動網路時產生啟動SDL及超微型SDL。啟動sdl可指定 超微型小區之識別碼,以及啟動小區10及/或將sdl供應至 超微型υτ所利用之啟動頻道。另一方面,超微型sdl可指 定在常規超微型小區-UT通信中所利用之典型系統、網路 及頻道。當超微型UT與超微型小區成對時,啟動及超微 . 型SDL可無線地發送至超微型υτ»超微sUT可在初次加 . 電或自一不同行動系統交換(例如,在第三代合作夥伴計 劃[3GPP]系統與3GPp2系統之間交換)時,利用啟動SDL以 © 獲取超微型小區。一旦獲取,超微型小區可在必要時更新 超微型UT處之超微型SDL。超微型υτ可接著利用超微型 SDL獲取超微型小區、搜尋其他小區 '交遞至其他小區或 交遞至超微型小區或其組合。 根據其他態樣,可在超微型小區上建立應用介面,其允 許超微型小區與任何適合超微型UT通信。可建立此通信 以判定超微型UT是否包括於與超微型小區相關聯之封閉 參 用戶群(CSG)内,且因此經授權以註冊於超微型小區上。 另外,可利用此介面以供應客體超微型υτ暫時地存取及 註冊於超微型小區上。一旦經由應用介面建立至超微型小 區之連接,超微型UT可分析包括巨集小區信號及其他相 -鄰超微型小區信號之所接收信號,且將關於周圍網路之資 訊提供至超微型小區。超微型小區可接著基於周圍網路資 訊產生包括最佳小區選擇參數之動態Sdl。舉例而言,動 態SDL可設定巨集網路與超微型小區之相對優先權。另外 或其他,動態SDL可將相鄰超微型小區建立為較佳或非較 I35136.doc -20- 200935932 佳小區;後者由動態SDL記入黑名單中。可將動態SDL提 供至超微型UT,超微型UT可在小區選擇及交遞程序中利 用該SDL。藉由利用周圍網路資訊,動態小區無需產生記 入黑名單之外來超微型小區的詳盡清單。實情為,僅足夠 相鄰(例如’具有足夠強的導頻信號)而干擾供應超微型小 區之彼等超微型小區可記入黑名單,從而致能大小相對較 小的動態SDL。除上述之外,若周圍網路發生改變,則超 微型小區可更新動態SDL,且經由應用介面將經更新SDL 無線地推送至超微型UT。因此,可向超微型UT供應經更 新之網路資訊,以在不斷演進之網路部署中最佳化搜尋及 獲取功能。 本文描述之技術可用於各種無線通信系統,諸如分碼多 重存取(CDMA)、分時多重存取(TDMA)、分頻多重存取 (FDMA)、正交FDMA(OFDMA)、單載波FDMA(SC-FDMA) 及其他系統。術語&quot;系統&quot;與&quot;網路&quot;常常可互換使用。 CDMA系統可實施諸如通用陸上無線電存取(UTRA)、 CDMA2000等之無線電技術。UTRA包括寬頻CDMA(W-CDMA)及 CDMA 之其他變體。CDMA2000 涵蓋 IS-2000、 IS-95及IS-856標準。TDMA系統可實施諸如全球行動通信 系統(GSM)之無線電技術。OFDMA系統可實施諸如演進型 UTRA(E-UTRA)、超行動寬頻(UMB)、IEEE 802.11(Wi-Fi)、IEEE 802_16(WiMAX)、IEEE 802.20、Flash-OFDM® 等之無線電技術。UTRA及E-UTRA為通用行動電信系統 (UMTS)之部分。長期演進(LTE)為UMTS之使用E-UTRA的 135136.doc -21 - 200935932 即將到來版本’其在下行鏈路上利用OFDMA且在上行鏈 路上利用 SC-FDMA。UTRA、E-UTRA、UMTS、LTE 及 GSM描述於來自名為”第三代合作夥伴計劃&quot;(3GPP)之組織 的文件中。CDMA2000及UMB描述於來自名為”第三代合 作夥伴計劃2”(3GPP2)之組織的文件中。 於本發明中使用時,術語,,組件”、”系統„、,,模組&quot;及其 類似者意欲指代電腦相關實體,其可為硬體、軟體、執行 中之軟體勃體、中間軟體、微碼及/或其任何組合。舉 例而言,一模組可為(但不限於)在處理器上執行之處理程 序、處理器、物件、可執行碼、執行線緒、程式、器件及/Such as circuit-switched voice networks (eg, code division multiple access [CDMA] iX or CDMA IX networks), combined circuit switched and packet switched voice and data networks (eg 'CDMA Evolution Data Optimization [EV- DO] network) or all packets. And data networks (for example, Long Term Evolution [lte] networks) or similar. Examples of access point BS (referred to herein as Bs) include various transmission powers having 135136.doc 200935932 including macro cells, micro ceU 'pic 〇 cells, pico cells, and the like. /cell size Node B (NB), Base Transceiver Station (BTS) Home Node b (hnb), or Bs for short. The introduction of various types of access point BSs to traditional macro BS networks has enabled significant flexibility and consumer control over personal access to such networks. The user can often configure the terminal device to select the adjacent access point BS or the macro network BS depending on which one provides the better signal. In addition, at least in some cases, the access point BS can provide a better rate plan than the macro network, thereby enabling the user to reduce the usage fee. However, because typical macro networks are often deployed for large-scale public use, such as in major markets, indoor reception may often be weaker than outdoor reception (eg, due to absorption of radio frequency signals due to buildings, insulators, ground landscapes, etc.) ) 'This makes mobile devices less effective than fixed line computers in this environment. However, access point BS can provide significant improvements in this environment. As an example, the ultra-micro cell technology provides users with significant control over personal wireless connectivity both indoors and outdoors, often eliminating most or all of these connectivity issues. Therefore, the ultra-micro]33 can further extend the UT mobility even in the sub-optimal environment for the macro network. Despite the significant advantages of ultra-micro BS and other access point deployments, some problems have arisen due to the added complexity of coupling the ultra-micro BS to the operator's macro network. For example, access point deployments (especially in the case of subminiature cells) are typically unplanned or semi-planned, which means that these BSs are not installed under the control of the network operator. Therefore, the operator has limited capabilities to implement the ideal placement of such access points relative to other such access points or relative to the macro 135136.doc -14·200935932 BS. In addition, it is possible to strictly limit the spatial shaping of the wireless signal relative to other picocells or even the precise location of such cells. In addition, in the case of ultra-micro BS deployments that are open to consumers for purchase and installation, very dense installations of such cells can occur in high-population cities or commercial areas, resulting in wireless between adjacent subminiature and macro cells. Resource competition. In addition, the femto BS can be associated with a Closed Subscriber Group (CSG) and provide network access only to members of the CSG; in this case access is not provided to, for example, the Universal Honeycomb public. Therefore, the ultra-micro deployment in the macro network integrates the restricted access (RA) BS with the universal access (ga) BS. Many legacy UTs do not have the ability to distinguish between 3 in and 11 8 BSs, especially when both BSs use cellular frequencies, and therefore may spend significant power to search for and attempt to access RA BSs that are denied service to the UT. In addition, legacy terminal and legacy wireless network connection standards require mobile terminals to scan incoming wireless signals to identify the best signal. In the case where there are only a few neighboring BSs that the terminal can distinguish, 'this is usually The process can be implemented. However, in a dense access point deployment, $10 or hundreds of access materials can exist in the vicinity (for example, in a big city apartment building), if you have a local access point (including UT) SG) In dense deployments, it can be a significant problem to distinguish between local access points from hundreds or thousands of closely located 2 foreign access points. For example, UT may use significant power to be connected (analysis) The pilot and control channel) will deny access to the UT's network access to the foreign access point or signal that the access to the UT will be denied to the foreign access point. The UT is not in the area that includes the local access point. In case (or for example, UT does not have In the case of a reservation for the ultra-fine effect t), the problem becomes I35I36.doc 200935932 distinguishes between RA BS and Universal Access (GA) BS and ignores RA Bs. In addition, although the pico BS can be deployed separately from the macro network Frequency, but in some cases, the picocell shares one or more network frequencies with the macrocell, and therefore cannot be so easily distinguished. Therefore, there is a need to distinguish between a pico BS and a macro BS. It may be beneficial to limit the transmission of the υτ to the RA BS when it is not possible to find the local BS. In addition, the possibility of signaling or searching for the RA BS is increased and reduced to foreign super-micro in case it is expected to find the home Bs ' Signaling of the SBS can be beneficial. Aspects of the present invention can provide improvements to many of the aforementioned problems. To address some of the foregoing and similar problems, the present invention provides mobile network parameterization for use with hybrid macros and subminiatures User terminal access of the cell access network. Parameterization can be used to direct the UT to one or another type of cell, channel or the like to improve the UE will find a better cell (if applicable) or The possibility of a non-preferred cell. In some implementations, the ultra-micro ❹ SID separated from the macro network system identifier (SID) is reserved for all pico cells. Therefore, the ultra-micro cell transmitting the sub-micro SID can be The receiving terminal is distinguished from the macro BS. In addition, different network IDs or node ids (Nids) are assigned to each of the picocells of the piconet. In some cases, for example, when NID is required for reuse. The cell ID may be further assigned to each of the picocells, optionally including additional information (such as a user's physical address, a mobile station identifier (MSI) or an international MSI (IMSI) or the like). The modified NID. Therefore, by including the SID/NID/cell in the transmitted signal, the pico BS can be distinguished from the macro BS and distinguished from other ultra-micro BSs, 135136.doc •16·200935932 For example, the parameterization based on the sub-micro SID/NID and (as appropriate) cell IDs can be used to direct the femtocell capability 2ϋτ towards the adjacent picocell or towards the channel utilized by the femtocell. This parameterization identifies the home picocell as a preferred or high priority network access point. If the pico UE detects the wireless nickname transmitted by the home micro-cell, the preferred or south priority status may enable the pico UT to acquire the small area, or if it is already connected to another network area. Handed over to this community. If the AMD SUT is not currently camped on the local picocell, then υτ can periodically search for neighboring cells to find a better picocell. In some aspects of the invention, the second parameterization can be provided to a UT or macro UT that is not ultra-micro capable, thereby directing such terminals away from the femto cell or toward the macro cell or both. If the picocell shares a common channel or carrier with the macrocell, the parameterization can establish the macrocell as a preferred or high priority cell relative to the picocell. This relative priority makes the macro UT superior to the pico cell and selects the macro 1 or causes the macro to periodically search for the macro cell when Φ is connected to the pico cell. If the ultra-mini J area and the macro cell are deployed on separate channels, the parameterization can exclude the ultra-fine cell data, so that the macro υτ ignores the letter initiated by the pico cell. In at least some aspects of the present invention, the parameterization may include a system decision list (SDL' see below) for establishing a cell priority for a particular geographic area of the situation or the access/speaker area (eg, below) (eg, , preferred roaming list). Therefore, the macro UT and the ultra-miniature capability (10) can be selectively supplied depending on the υτ position (see below) to increase the possibility of acquiring a specific type of cell. 135136.doc -17· 200935932 According to other aspects, 'facing or away from The particular type of cell steering υτ can be implemented based on the geographic area (GE0) in which υτ is currently located. For example, if the UT with ultra-micro capabilities is located within the GE ’ where the home micro-cell is located, then network parameterization (e.g., SDL) that directs the ultra-micro υτ to the preferred femto cell can be provided. Additionally or alternatively, the parameterization may specify cell priority based on the current GEO. Therefore, within the home GE, parameterization can designate the femto cell as a cell with relatively higher priority than other cells, such as a macro cell. On the other hand, when the pico UT is in the non-native GEO, the pico cell can be given the lowest priority. In this way, the parameterized group will not need to be updated by the network as the UT travels between GEOs. In either case, the relative cell priority may be established based on whether the ultra-micro υτ* is expected to discover the home micro-cell based on the current GE0 in which the pico UT is located. The provision of appropriate parameterization to υτ based on UT capabilities and/or UT locations can be implemented in a variety of suitable manners. In at least one aspect, a super-miniature database (including UT-specific information) can be maintained at the mobile network. When a user tries to register on a small area, the information identifying the UT can be provided to the network. The network can then determine whether the UT is attempting to register on the macro cell or the pico cell, and in the latter case, determine whether the pico cell is the home cell (on which the UT is authorized to access the mobile network) or is the alien The cell (on which is not accessed to υτ (4)). If the UT is registered on the macro cell, the parameterization can be sent wirelessly (1) to υτ (for example, from a macro cell or an adjacent pico cell) to increase the UT's ability to search for and acquire ultra-miniature (four) possibilities (see The situation depends on the UT in the GEO. If you are registered on an alien picocell, you can provide 135136.doc •18.200935932 different parameter groups to υτ to guide the UT to search for other subminiature cells, search for other frequencies, search for macro cells, or a combination thereof. If υτ is registered on the home micro-cell, then the third parameterization can be provided to the UT, thereby increasing the probability that the UT will remain on the home micro-cell (eg, by generating a high threshold, higher than the The limit υτ is searched or handed over to other cells). According to other aspects, when υτ is registered on a cell, parameterization can be dynamically implemented based on UT information. In such aspects, the Kenting specific information can be provided to a mobile network that can generate or update a customized system decision list (SDL) for the UT (eg, a recommended roaming list [PRL] or the like) . Whether the SDL visual UT is capable of ultra-miniature capability, or depending on the GEO, depending on the situation, includes appropriate parameterization. 1; Ding specific information, current GE information and local GEO information (using it to dynamically configure SDL) can be obtained in a variety of suitable ways. In at least one aspect, the UT information and the home GEO are available to the operator list maintained by the mobile operator of the UT (eg, the home location register [HLR] or similar device). In other aspects, this information can be stored and provided with the registration request. In other aspects, the user can manually enter information into the UT (eg, by dialing a service number and including UT specific information), which can be uploaded by registration or sent to the mobile network on an uplink channel. Once the network receives the UT specific information, the dynamic sdl can be generated and sent wirelessly to the UT. Alternatively, an initiating procedure can be utilized to generate a dedicated boot SDL when the pico UT is paired with the home picocell or an initial configuration with the home picocell. The femto cell can generate a boot SDL and a subminiature SDL when it powers up and connects to the 135136.doc -19. 200935932 mobile network. The start sdl may specify the identification code of the picocell and the start channel utilized to initiate the cell 10 and/or supply sdl to the pico υτ. On the other hand, the ultra-mini sdl can specify typical systems, networks, and channels utilized in conventional ultra-micro cell-UT communications. When the pico UT is paired with the picocell, the start-up and the AMD-type SDL can be wirelessly transmitted to the ultra-micro υτ»supermicro sUT can be exchanged at the first time or from a different mobile system (for example, in the third When the 3D partner system [3GPP] system is exchanged with the 3GPp2 system), the SMD is used to acquire the femto cell. Once acquired, the femtocell can update the subminiature SDL at the pico UT as necessary. The ultra-micro υτ can then acquire the femto cell using the ultra-micro SDL, search for other cells 'delivered to other cells or hand over to the pico cell or a combination thereof. According to other aspects, an application interface can be established on the femtocell that allows the femtocell to communicate with any suitable pico UT. This communication can be established to determine if the pico UT is included in a Closed Subscriber Group (CSG) associated with the femto cell and is therefore authorized to register on the picocell. In addition, the interface can be used to temporarily access and register the guest ultra-micro υτ on the picocell. Once the connection to the pico cell is established via the application interface, the pico UT can analyze the received signal including the macro cell signal and other phase-neighbor cell signals and provide information about the surrounding network to the pico cell. The femto cell can then generate a dynamic Sdl that includes the best cell selection parameters based on the surrounding network traffic. For example, dynamic SDL can set the relative priority of the macro network and the femto cell. In addition or in addition, the dynamic SDL may establish the neighboring picocell as a preferred or non-I35136.doc -20-200935932 good cell; the latter is blacklisted by the dynamic SDL. The dynamic SDL can be provided to a pico UT that can be utilized in cell selection and handover procedures. By utilizing the surrounding network information, the dynamic cell does not need to generate an exhaustive list of sub-cells that are blacklisted. The fact is that only those sub-micro cells that are sufficiently adjacent (e.g., have a sufficiently strong pilot signal) to interfere with the supply of the picocells can be blacklisted, thereby enabling a relatively small size dynamic SDL. In addition to the above, if the surrounding network changes, the picocell can update the dynamic SDL and push the updated SDL wirelessly to the pico UT via the application interface. As a result, the ultra-micro UT can be provisioned with updated network information to optimize search and acquisition capabilities in an evolving network deployment. The techniques described herein can be used in a variety of wireless communication systems, such as code division multiple access (CDMA), time division multiple access (TDMA), frequency division multiple access (FDMA), orthogonal FDMA (OFDMA), single carrier FDMA ( SC-FDMA) and other systems. The terms &quot;system&quot; and &quot;network&quot; are often used interchangeably. A CDMA system may implement a radio technology such as Universal Land Radio Access (UTRA), CDMA2000, and the like. UTRA includes Wideband CDMA (W-CDMA) and other variants of CDMA. CDMA2000 covers the IS-2000, IS-95 and IS-856 standards. A TDMA system can implement a radio technology such as the Global System for Mobile Communications (GSM). The OFDMA system can implement radio technologies such as Evolved UTRA (E-UTRA), Ultra Mobile Broadband (UMB), IEEE 802.11 (Wi-Fi), IEEE 802_16 (WiMAX), IEEE 802.20, Flash-OFDM®, and the like. UTRA and E-UTRA are part of the Universal Mobile Telecommunications System (UMTS). Long Term Evolution (LTE) is UMTS's use of E-UTRA 135136.doc -21 - 200935932 Upcoming version 'It utilizes OFDMA on the downlink and SC-FDMA on the uplink. UTRA, E-UTRA, UMTS, LTE and GSM are described in documents from an organization named "3rd Generation Partnership Project" (3GPP). CDMA2000 and UMB are described in a program called "3rd Generation Partnership Project 2" In the documents of the organization of (3GPP2). As used in the present invention, the terms, components, "systems", ", modules" and the like are intended to refer to computer-related entities, which may be hardware, Software, executing soft body, intermediate software, microcode, and/or any combination thereof. For example, a module can be, but is not limited to, a processor executing on a processor, a processor, an object, an executable, a thread, a program, a device, and/or

或電腦。一或多個模組可常駐於一處理程序及/或執行線 緒内’且一模組可局部化於-電子器件上及/或分散於兩 個或兩個以上電子器件之間。此外,&amp;等模組可自上面儲 存有各種資料結構之各種電腦可讀媒體執行。模組可(諸 如)根據具有-或多個資料封包之信號(例如,來自一與區 域系統、分散式系統中之另一組件及/或藉由該信號跨越 諸如網際網路之網路與其他系統互動之組件的資料)藉由 區域及/或遠端過程而通信。另夕卜,如熟習此項技術者將 瞭解本文中所描述之系統之組件或模組可經重新配置及/ 或由額外組件/模組/系統來補充以便促進達成關於其 述的各種態樣、目的、俱# # 、 怕 之精確組態。 優點等,以限於在給定@中陳述 此外,在本文Φ #人&amp; 態 行 甲…合使用者終端機(UT)來描述 樣。UT亦可稱兔盔μ 冉為系統、用戶單元、用戶台、行動 135136.doc •22· 200935932 動件、行動通信器件、行動器件、遠端台、遠端終端機、 存取終端機(AT)、使用者代理(UA)、使用者器件或使用者 設備(UE)或其類似者。用戶台可為蜂巢式電話、無繩電 話、會話起始協定(SIP)電話、無線區域迴路(WLL)台、個 人數位助理(PDA)、具有無線連接能力之掌上型器件或連 接至無線數據機或促進與處理器件之無線通信之類似機構 的其他處理器件。Or computer. One or more modules may reside in a processing program and/or execution circuitry&apos; and a module may be localized on the electronic device and/or dispersed between two or more electronic devices. In addition, modules such as &amp; can be executed from a variety of computer readable media having various data structures stored thereon. The module may, for example, be based on signals having - or multiple data packets (eg, from a regional system, another component in a decentralized system, and/or by means of the signal across a network such as the Internet and other The data of the components of the system interaction) communicates via regional and/or remote processes. In addition, those skilled in the art will appreciate that the components or modules of the systems described herein can be reconfigured and/or supplemented by additional components/modules/systems to facilitate achieving various aspects of the description. , purpose, and ##, fear of precise configuration. Advantages, etc., to be limited to the statement in the given @ In addition, in this article Φ #人&amp; state A ... combined with the user terminal (UT) to describe. UT can also be called rabbit helmet μ 冉 as system, subscriber unit, subscriber station, action 135136.doc •22· 200935932 moving parts, mobile communication devices, mobile devices, remote stations, remote terminals, access terminals (AT ), User Agent (UA), User Device or User Equipment (UE) or the like. The subscriber station can be a cellular telephone, a cordless telephone, a Session Initiation Protocol (SIP) telephone, a Wireless Area Loop (WLL) station, a Personal Digital Assistant (PDA), a wirelessly connected handheld device, or connected to a wireless data modem or Other processing devices that facilitate similar mechanisms for wireless communication with processing devices.

在一或多個例示性實施例中,所描述之功能可實施於硬 體、軟體、韌體、中間軟體、微碼,或其任何適合組合 中。若實施於軟體中,則可將該等功能作為一或多個指令 或程式碼儲存⑨電腦可讀媒體上或經由電腦可讀媒體來傳 輸。電腦可讀媒體包含電腦可讀硬體(其包括電腦儲存媒 體及硬體通信媒體)及包括任何軟體、中間軟體、韌體、 微碼及/或促進將電腦程式自—處轉移至另—處之硬體媒 體的通信媒體^ ' 用於本文中時,電腦儲存媒體可為可由電腦存取之任何 實體媒為實❹非限制’ &amp;等儲存媒體可包含 隨、職、贿⑽、咖職或其他光碟儲存器、磁 碟儲存器或其他磁性儲存器件、智慧卡及快閃記憶體器件 (例如’記憶卡、記憶棒、行動碟(keydrive)等),或可用 ,以指令或資料結構之形式載運或儲存程式碼且可由電腦 =的任何其他適合媒體。硬體通信媒體可包括至少部分 用電、機械及/或機電硬體而促 體轉移至另-實體的任何適合器件或資料連接^般而實 135l36.doc •23- 200935932 言’可恰當地將資料連接稱作電腦可讀媒體。舉例而言, 若使用同軸電纜、光纖電纜、雙絞線、數位用戶線(DSL) 或諸如紅外、無線電及微波之無線技術而自網站、伺服器 或其他遠端源傳輸程式、軟體或其他資料,則同軸電規、 光纖電纜、雙絞線、DSL或諸如紅外、無線電及微波之無 線技術包括於媒體之定義中,且與此媒體相關聯之任何適 合硬體組件包括在硬體通信媒體之定義中。於本文中使用In one or more exemplary embodiments, the functions described may be implemented in hardware, software, firmware, intermediate software, microcode, or any suitable combination thereof. If implemented in software, the functions may be stored as one or more instructions or code on a computer readable medium or transmitted via a computer readable medium. Computer-readable media includes computer-readable hardware (including computer storage media and hardware communication media) and includes any software, intermediate software, firmware, microcode, and/or facilitates the transfer of computer programs from another location to another location The communication medium of the hardware media ^ 'When used in this document, the computer storage medium can be any non-restricted media that can be accessed by the computer. &amp; storage media can include, employment, bribe (10), cadre Or other optical disk storage, disk storage or other magnetic storage device, smart card and flash memory device (such as 'memory card, memory stick, keydrive, etc.), or available, in an instruction or data structure Any other suitable medium that carries or stores the code and can be computer=. The hardware communication medium may include any suitable device or data link that is at least partially electrically, mechanically, and/or electromechanically transferred to another entity. 135l36.doc • 23- 200935932 Data connections are referred to as computer readable media. For example, if you use coaxial cable, fiber optic cable, twisted pair cable, digital subscriber line (DSL), or wireless technologies such as infrared, radio, and microwave, transfer programs, software, or other materials from websites, servers, or other remote sources. , coaxial electrical gauges, fiber optic cables, twisted pair, DSL, or wireless technologies such as infrared, radio, and microwave are included in the definition of media, and any suitable hardware components associated with the media are included in the hardware communication medium. In the definition. Used in this article

時,磁碟及光碟包括緊密光碟(CD)、雷射光碟、光學碟 片、數位通用光碟(DVD)、軟性磁碟及藍光光碟,其中磁 碟通常以磁性方式再現資料,而光碟用雷射以光學方式再 現資料。上述各項之組合亦應包括在電腦可讀媒體之範疇 内。 。對於硬體實施,結合本文中所揭示之態樣而描述之處理 單元、各種說明性邏輯、邏輯區&amp;、模組及電路可實施或 執行於以下各者内:—或多個特殊應用積體電路(AS⑹、 數位信號處理器(DSP)、數位信號處理器件(DspD)、可程 式化邏輯器件(PLD)、場可程式化閘陣列(FpGA)、離散開 或電晶體邏輯、離散硬體組件、通用處理器、控制器、微 :制器、微處理器、經設計以執行本文中所描述之功能的 -他電子單元’或其組合。通用處理器可為微處理器, ^替代例中,處理器可為任何習知之處理器、控制器、微 ,制器或狀態機。亦可將處理器實施為計算器件之組合, 與微處理器之組合、複數個微處理器、結合一 核心之—或多個微處理器或任何其他合適組態。另 135136.doc -24- 200935932 外,至少一處理器可包含可操作以執行本文中所描述之步 驟及/或動作中之一或多者的一或多個模組。 ❹ 此外’藉由使用標準程式化及/或工程技術,本文所描 述之各種態樣或特徵可實施為方法、裝置或製品。此外田 結合本文中所揭示之態樣而描述之方法或演算法的步驟及/ 或動作可直接實施於硬體中、實施於由處理器執行之軟體 模組中或此兩者之組合中。另外,在一些態樣十,方法或 演算法之步驟及/或動作可作為程式碼及/或指令中之至少 -者或任-組合或集合而常駐於器件可讀媒體、機器可讀 媒體及/或電腦可讀媒體上,器件可讀媒體、冑器可讀媒 體及/或電腦可讀媒體可併入於電腦程式產品中。於本文 中使用時,術語&quot;製品”意欲涵蓋可自任何電腦可讀器 媒體存取之電腦程式。 另外,詞”例示性,,在本文中用於意謂充當實例、例子或 說明。本文中被描述為”例示性&quot;之任何態樣或設計未必應 理解為相比其他態樣或設計而言較佳或有利。實情為 ”例示性”之使用意欲以具體方式呈現概念。於本申請2 隨附申請專利範圍中使用時,術二 或而非排他性,,或'亦即’除非另有指定或自上Disks and optical discs include compact discs (CDs), laser discs, optical discs, digital versatile discs (DVDs), flexible magnetic discs, and Blu-ray discs. Disks usually reproduce data magnetically, while discs use lasers. Reproduce data optically. Combinations of the above should also be included in the context of computer readable media. . For hardware implementations, the processing units, various illustrative logic, logic blocks &amp; modules, and circuits described in connection with the aspects disclosed herein can be implemented or implemented in the following: - or a plurality of special application products Body circuit (AS(6), digital signal processor (DSP), digital signal processing device (DspD), programmable logic device (PLD), field programmable gate array (FpGA), discrete open or transistor logic, discrete hardware Components, general purpose processors, controllers, microprocessors, microprocessors, other electronic units designed to perform the functions described herein, or combinations thereof. General purpose processors may be microprocessors, ^ alternatives The processor can be any conventional processor, controller, micro, controller or state machine. The processor can also be implemented as a combination of computing devices, a combination with a microprocessor, a plurality of microprocessors, a combination In addition to the core - or a plurality of microprocessors or any other suitable configuration, at least one processor may comprise one of the steps and/or actions described herein operable to perform the steps described herein. One or more modules of the plurality. ❹ In addition, various aspects or features described herein may be implemented as methods, devices, or articles of manufacture by using standard stylization and/or engineering techniques. The steps and/or actions of the method or algorithm described may be implemented directly in hardware, in a software module executed by a processor, or in a combination of the two. The steps and/or actions of the method or algorithm may reside on the device readable medium, machine readable medium, and/or computer readable medium as at least or in any combination or collection of code and/or instructions. The device readable medium, the readable medium, and/or the computer readable medium can be incorporated into a computer program product. As used herein, the term &quot;article&quot; is intended to cover access from any computer readable medium. In addition, the word "exemplary" is used herein to mean serving as an example, instance, or illustration. Any aspect or design described herein as "exemplary" is not necessarily to be construed as Or the design is preferred or advantageous. The use of the "exemplary" is intended to present the concept in a specific manner. When used in the scope of the application of the present application 2, the second or non-exclusive, or 'that is' Unless otherwise specified or from

楚看出’否則”X利用A或B”意欲意謂自然包括性_中之 任一者。亦即,若x利用Α ; χ利用B 者,則在先前例子中之任一者之,帛 &lt; Β兩 Β&quot;。^^ ^ H兄下滿足利用Α或 开Μ 有減或自上下文清楚看“針對單數 …則於本申請案及隨附申請專利範圍中使用時, 135136.doc •25·Chu sees that 'otherwise' X uses A or B" intended to mean any of the natural inclusions. That is, if x uses Α; χ uses B, then in either of the previous examples, 帛 &lt; Β two Β&quot;. ^^ ^ H brothers are satisfied with the use of Α or Μ Μ 或 或 或 或 或 或 针对 针对 针对 针对 针对 针对 针对 针对 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135 135

❹ 200935932 ”一”應大體上理解為意謂&quot;一或多個”。 於本文中使用時,術語”推斷大體指代自如經由事件及/ =獲之—組觀測結果來推出或推斷系統、環境及/ :使態的過程。推斷可用於識別特定情形或動 :,或⑽如)可產生狀態上的機率分布。推斷可為機率性 亦即’基於對資料及事件之考慮來計算所關心狀態上 之機,分布。推斷亦可指代用於由—組事件及/或資料構 成較局階事件之技術。無論事件在時間上是否緊密相關, 且無論事件及f料是來自—個還是若干個事件及資料源, 此推斷由-組觀察到之事件及/或已储存之事件資料得出 新事件或動作之構造。 參看圖式,圖1說明可實施各種所揭示之實施例及態樣 之經組態以支援若干使用者之例示性無線通信系統1〇〇。 如圖1中所示,系統100提供用於多個小區(諸如巨集小區 102a、l〇2b、102c、102d、l〇2e、102f、l〇2g(或者,巨集 小區102a至102g))之通信,其中每一小區由一相應存取點 (AP)104a、104b、104c、l〇4d、104e、104f、l〇4g(或者, AP 104a至104g)服務。每一小區i〇2a至l〇2g可進一步劃分 成一或多個扇區。各個UT 106a、106b、106c、106d、 106e、106f、106g、106h、106i、106j、106k(或者 UT 106a至106k)分散於系統1〇〇中。例如視AT(106a至106k)是 否在作用中及其是否處於軟交遞中而定,每一 AT 106a至 106k可在給定時刻在前向鏈路(FL)及/或反向鏈路(RL)上與 一或多個AP 104a至104g通信。無線通信系統100可在較大 135136.doc •26· 200935932 地理區域上提供服務;例如,巨集小區職至1〇28可覆蓋 鄰近之若干區塊。 圖2描繪一用以致能BS(例如,巨集Bs、超微型bs)在網 路環境内之部署之例示性通信系統2〇〇。系統包括包括 超微型BS 210之多個BS,其每一者安裝於相應的小規模網 路環境中。小規模網路環境之實例可包括使用者住宅、商 . 業區、室内/室外設施MO等。超微型88 21〇可經組態以服 務於相關聯UT 22〇(例如,包括於與超微型BS 210相關聯 之CSG中),或視情況外來或訪客υτ 22〇(例如,未對於超 微型BS 210之CSG而組態)。每一超微型BS 21〇進一步經由 DSL路由器(未圖示)或者電規數據機、功率線連接上之寬 頻、衛星網際網路連接或類似寬頻網際網路連接(未圖示) 而耦接至網際網路240及行動營運商核心網路25〇。 為實施經由超微型BS 210之無線服務,超微型210之 擁有者預訂經由行動營運商核心網路25〇供應之行動服務 ❹ (諸如,3G行動服務)。又,UT 220可能夠在巨集蜂巢式環 境及/或住宅小規模網路環境中利用本文描述之各種技術 操作。因此,至少在一些所揭示之態樣中,超微型Bs 21〇 &quot;T與任何適合現存UT 220回湖相容。此外,除了巨率小區 行動網路250之外’ UT 220可由預定數目之超微型bs 21〇 服務’尤其是由常駐於相應使用者住宅、商業區或室内/ 室外設施230内之超微型BS 210服務,且不能處於與巨集 網路2 5 0之軟交接狀態。應暸解,雖然本文描述之態樣利 用3GPP術語’但應理解,該等態樣亦可應用於3Gpp技術 135136.doc -27- 200935932 (版本 99 [Rel99]、Rel5、Rel6、Rel7)以及 3GPP2 技術 (1 xRTT、1 xEV-DO RelO、RevA、RevB)及其他已知及相關 技術。 圖3說明用於提供行動通信環境中之集中式存取點管理 之實例系統300的方塊圖。適合行動環境可包括GA巨集存 ' 取點(例如,在一些狀況下設定為GA之巨集小區、微型小 • 區、微型小區或甚至超微型小區),以及具有有限CSG之 RA超微型存取點。因為系統300為集中化的,所以可對由 ❹ 多個BS服務之UT或由BS之網路服務之所有UT提供存取點 管理。作為說明性實例,若系統300位於管理用於基地台 子系統(BSS)之若干BS之基地台控制器(BSC)處,則存取點 管理可由系統300對於BSS之每一 BS提供。同樣地,若系 統300位於利用通用封包無線電系統(GPRS)之系統的行動 交換中心(MSC)或服務GPRS支援節點(SGSN)處,則可對 由MSC及/或SGSN服務之所有BS提供存取管理。另外或其 _ 他,系統300可位於營運商之核心網路内,從而使得存取 點管理能夠對於耦接至核心網路之所有BS在核心網路處集 中管理。在一些狀況下,系統300可部署於超微型小區之 • 集中式網路處、網際網路伺服器上或營運商之核心網路内 . (例如,此網路之網際網路閘道器處)以促進對超微型小區 中之每一者的存取管理。 系統300包含促進對與行動網路耦接之UT之存取點選擇 的供應模組302。供應模組302可產生可由UT利用以在至 行動網路之多個可用存取點中進行選擇的系統判定清單 135136.doc •28· 200935932 (SDL)(例如,參見下文圖8)。另外,供應模組302可至少 基於UT之超微型能力而關於UT定製。因此,例如,可定 製第一類SDL用於不具有超微型能力之UT,且可定製第二 類SDL用於具超微型能力UT。另外,該第二類對於每一具 超微型能力之UT可經個別化處理,以(例如)識別准許至特 ' 定超微型UT之網路存取的超微型小區。 為定製SDL,供應模組302可包括自UE-超微型資料剖析 器306獲得UE特定及超微型小區特定資料之SDL模組308。 ® 通信處理器304可與各種外部源耦接以獲得資訊。舉例而 言,供應模組302可利用通信處理器304與特定超微型小區 (例如,經由經網際網路與超微型小區通信之網際網路閘 道器)耦接以獲得超微型小區資料或關於與超微型小區耦 接之UT之資料(例如,MSI、IMSI、電子序號[ESN]或UT 之可能唯一 ID)。另外或其他,通信處理器304可利用巨集 網路(未描繪)與超微型UT耦接以獲得此資訊。在其他態樣 中,通信處理器可與超微型資料庫(例如,參見下文圖4)或 營運商之本籍位置暫存器(HLR)耦接,其中此暫存器儲存 超微型UT資料。 . 將由通信處理器304獲得之資料提供至UE-超微型剖析器 306以擷取相關資訊。此資訊可包括服務BS之SID(例如, 對於超微型小區保留之超微型SID、巨集SID),以及NID 及/或與SID相關聯之小區之小區ID之子組。此外,所擷取 之資訊可包含嘗試在行動網路上註冊之UT之ID資訊。SDL 模組308可產生用於與巨集BS耦接之UT、不為具超微型能 135136.doc -29- 200935932 力之UT(至少部分地自UT資料判定)或不在本籍GEO中之 UT之預設SDL(例如,PRL)。預設SDL可含有UT可連接至 之巨集SID/NID(或其他節點ID,諸如EV-DO系統中之子網 路ID)之清單。在一些態樣中,如下文更詳細地論述,SDL 可將一或多個SID/NID建立為較佳ID。 對於定製SDL,SDL模組308可向SDL供應關於特定UT或 服務於UT之小區之資訊。因此,例如,若該特定UT為具 超微型能力之UT,則為超微型BS保留之SID可包括於定製 SDL中。藉由利用此定製SDL,UT可識別包括如自超微型 小區起源之所保留SID的信號。此外,定製SDL可包括NID 及/或與超微型SID相關聯之小區ID之子組。因此,UT可忽 略不包括NID/小區ID之子組之信號,或結合包括不同 SID(例如,巨集SID)之信號簡單地分析包括NID/小區ID之 子組之信號。在一些態樣中,NID/小區ID之子組可包括與 註冊超微型UT相關聯之本籍超微型小區之一或多個NID/ 小區ID。 根據本發明之一些態樣,SDL模組308可將一或多個系 統及/或網路ID建立為較佳的,將一或多個其他系統及/或 網路ID建立為非較佳的,對一系統及/或網路id或其組合 指示無特殊優選。因此,UT可基於信號強度及/或品質, 以及SID/NID優選狀態而在一或多個信號中進行選擇。在 向UT提供具有較佳SID/NID之定製SDL之情況下,該UT可 繼續搜尋較佳SID/NID,即使當前已耦接至非較佳小區或 具有無優選狀態之小區亦如此。另外,若UT獲取較佳 135136.doc -30· 200935932 SID/NID,則可建立高臨限值,高於該臨限值UT將搜尋其 他BS。因此,作為一特定實例,UT可在耦接至較佳小區 時忽略鄰近小區,除非較佳小區之信號強度降低到低於相 對較低臨限值,或較佳小區與鄰近小區之間的信號強度差 異升高至高於一相對較高臨限值,其偏選(favor)鄰近小 區。 根據其他態樣,SDL可根據一或多個GEO而組態。因 此,獲得註冊請求之小區常駐其中的GEO内之可用 SID/NID可包括於SDL中。在一些態樣中,在UT行進至當 前GE0之外部之狀況下,SDL可進一步包括鄰近GEO及相 關聯SID/NID。對於針對超微型UT而定製之SDL,若當前 GE0為與超微型UT相關聯之本籍GE0,則當前GE0可含有 巨集BS SID/NID及一或多個超微型SID/NID。另外,超微 型SID/NID可被給予較佳狀態,從而如上文論述導引UT相 對於其他類型之網路存取點而偏選超微型小區。若當前 GEO不為本籍GEO,則SDL可經組態以不含有超微型 SID/NID,從而使得超微型UT能夠忽略至外來超微型小區 之多餘發信號。因此,可藉由在可預期將發現本籍超微型 小區(例如,在本籍GEO或多個本籍GEO中)時將超微型小 區SID/NID列為較佳及在預期不會發現本籍超微型小區(例 如,在本籍GEO之外部)時不包括超微型小'區SID/NID而利 用定製SDL來節約對超微型UT之額外發信號。 圖4說明提供對具有各不相同存取能力之UT 404A、 404B之存取點管理的實例系統400的方塊圖。系統400可包 135136.doc -31 - 200935932 含基於個別ΙΙΤ能力產生用於UT之SDl的供應模組4〇2。供 應模組402可在通信處理器408處接收來自存取點(諸如巨 集存取點4.06A或超微型存取點406B)之註冊請求,其包括 註冊 UT 404A、404B 之 m 資訊(例如,MSI、IMSI、esn 等)。可利用該ID資訊獲得各種網路資料儲存器處之用戶 資訊(416)。舉例而言’若註冊UT為超微型υτ 4〇4B,則 UE-小區資料剖析器412可存取網路超微型資料庫414。超 微型資料庫414可儲存用戶概況416,其指示超微型 UT(404A)准許何用戶存取特定超微型小區(4〇6B),以及何 超微型小區(406B)為用於特定用戶之超微型υτ(404Α)之本 籍小區。另外,資料庫414可指示用於每一超微型小區 (406Β)之相關聯GEO及用於每一超微型UT(404A)之本籍 GEO。因此,利用註冊超微型UT 404A之ID,供應模組402 可識別與此ID相關聯之超微型小區(406B)及此等小區之 GEO。若超微型UT 404A在本籍GEO中,則定製SDL可由 SDL模組422產生,從而識別本籍超微型小區且將此小區 建立為較佳小區。否則,SDL可包括巨集小區SID/NID, 從而指導超微型UT搜尋及/或保持耦接至巨集小區。 替代前述或除前述之外,供應模組402可包含可耦接至 網際網路及/或行動核心網路420之資料介面418。因此, 資料介面41 8可利用由此小區406B利用之網際網路閘道器 (未描繪)與超微型小區406B通信。可利用該資料介面詢問 超微型小區406B且獲得此小區及/或耦接至超微型小區 406B之UT(404B)之ID資訊。另外,資料介面可與巨集核 135136.doc -32· 200935932 心網路420通信以獲得υτ用戶資訊。在一些態樣中,此資 訊可包括用戶ID資訊。可利用該用戶⑴資訊建立用於超微 型小區406B之特定GE〇。作為一實例可利用實體位址 (例如郵寄位址)、郵遞區號及/或類似資訊以建立超微型 GE〇。因此,超微型GEO可為超微型小區406B周圍之相對 較小區域’從而限制包括於超微型小區之GEO中之其他存 • 取點(4〇6A)之數目。若註冊UT為超微型UT(404A),且超 微SUT(4〇4A)之本籍GEO與超微型小區406Β之GEO相同, 則超微型GEO以及超微型小區4〇6BiSID/NlD/小區可由 SDL模組422包括於定製SDL中,將此定製sdl提供至此 UT。否則’可產生含有巨集BS SID/NID/小區ID之SDL且 將其提供至UT ’從而使仍忽略超微型小區信號而替代地 搜尋巨集信號。 圖5描繪為UT 504提供分散式存取點管理之實例系統5〇〇 的方塊圖。如所描繪,系統500可包含一或多個超微型小 ❹ 區502及包括超微型UT 504之一或多個UT。超微型小區 502可包含經組態以在超微型υτ 504與此UT 504所相關聯 之本籍超微型小區502之間提供無線資料交換的介面應用 • 506。可利用介面應用506以如上文描述類似之方式但自本 - 籍超微型小區502而非集中式網路位置產生專用於超微型 UT 504之定製SDL。另外,介面應用506可利用通常由超 微型小區502利用之頻道用於無線通信,或可利用特殊供 應或啟動頻道用於提供定製SDL(例如,參見下文圖6)。 介面應用506可由本籍超微型小區502利用以執行經由至 135136.doc -33- 200935932 網際網路之連接之與巨集核心網路518之自組態程序。因 此,例如,超微型小區502可獲得關於超微型小區5〇2之鄰 近小區(包括巨集小區以及其他超微型小區X未描繪)之資 訊。另外,超微型小區502可獲得指示此等其他超微型小 區為超微型UT 504之本籍超微型小區還是提供對超微型 UT 504之有限存取或無存取之外來超微型小區的資料。 介面應用506可包含可產生用於超微型υτ 5〇4之定製 SDL的SDL供應模組512。若超微型υτ 504包括於與超微型 Φ 小區502相關聯之CSG中,則可供應SDL以將超微型小區 502以及任何鄰近本籍超微型小區指定為較佳小區,將相 鄰巨集小區指定為較低優先權,且將相鄰外來超微型小區 指定為非較佳小區。若超微型^^ 5〇4不包括於CSG中,則 超微型小區502可檢查客體用戶群(GSG)以判定超微型υτ 504是否應被提供客體存取。客體存取可包含完全存取(與 本籍超微型小區相同)或有限存取,有限存取限制頻寬、 ^ 行動資源及/或客體UT可利用超微型小區5〇2之時間量。對 於客體SDL,可將超微型小區5〇2建立為較佳小區,且將 鄰近小區(巨集或超微型)建立為較低優先權小區。視情 況,客體SDL可不對超微型小區5〇2與鄰近小區提供特殊 優選,從而允許客體UT基於信號強度來獲取及存取鄰近 小區0 在本發明之一些態樣中,超微型υτ 5〇4可利用介面應用 506來提供SDL至超微型小區5〇2。因此’例如經由無線 供應函式(OTAF)520及巨集BS 522自行動核心網路5丨8獲得 135136.doc -34- 200935932 之預設SDL可轉遞至介面應用506。SDL供應模組512可接 著修改該預設SDL以產生定製SDL,如上文論述,定製 SDL包括為較佳小區之超微型小區5〇2之SID/NID/小區 ID ’且將鄰近小區指定為非較佳小區。 一旦產生定製SDL且將其提供至超微型υτ 5〇4,超微型 UT 504及超微型小區5〇2即可利用常規無線通信(例如,利 用超微型小區502之典型操作頻道,如與例如啟動或供應 頻道相對照)。週期性地,超微型小區5〇2及超微型UT 504 可參與介面應用506(視情況利用特殊啟動頻率)以更新SDL 供應模組512處之SDL供應《舉例而言,可經由介面應用 506之週期性使用將鄰近小區/小區ID之改變添加至由超微 型UT 504利用之SDL。因此,系統5〇〇可利用介面應用5〇6 及SDL供應模組512來產生以及更新定製SDL以反映正改變 之網路條件。 根據本發明之特定態樣’定製SDL可反映超微型小區 502附近之主要信號條件。在此等態樣中,超微型卩丁 504 可經由介面應用506柄接至超微型小區502以用於SDL供 應。在此供應期間,超微型UT 504可利用信號分析模組 508來監測及分析鄰近巨集及超微型Bs(522)之無線信號。 可利用信號分析模組508獲得信號強度、信號品質及類似 統計。另外’信號分析模組508可識別與每一信號一起傳 輸之SID/NID/小區id資訊,以識別傳輸該信號之 BS(522)。可經由報告模組510將該資訊提供至超微型小區 502。在此狀況下,SDL供應模組512可識別引起潛在強干 135l36.doc -35- 200935932 擾,或具有足夠強信號以使超微型^^ 504嘗試獲取或交換 至此等信號的鄰近小區(522)。若超微型υτ 5〇4包括於超 微型小區502之CSG或GSG中,貝彳SDL供應模組512可將鄰 近外來超微型小區s己入黑名單,以防止超微型υτ 5設法 獲取此等小區。在如上文論述之SDL更新供應期間,由信 號分析模組508判定之新的外來超微型小區亦可在必要時 記入黑名單。因此,可供應定製SDL以僅將可能干擾超微 型UT 504或使超微型UT 504交遞至此等小區之彼等鄰近小 區記入黑名單,從而與將與超微型小區5〇2共用共同GE〇 之所有超微型小區記入黑名單相對照而提供相對較小的黑 名單。 圖6描繪促進對耦接至行動網路之終端機器件之初始起 動供應的實例系統600的方塊圖。系統6〇〇包含經由BS_UT 介面耦接至超微型UT 604的供應模組602 〇此介面可包含 耦接至供應模組之超微塑小區器件(未描繪)之無線收發器 及由此收發器利用之無線頻道。如本文描述’可利用起動 供應來產生用於超微型UT 604之定製SDL,且提供定製 SDL以用於選擇及交遞至SDL中所識別之網路Bs。 供應模組602包含建立對耦接至供應模組6〇2之超微型小 區及對超微型UT 604之啟動供應的啟動組態模組6〇6。啟 動組態模組606可自可與行動營運商之網路通信(例如,經 由與超微型小區耦接之網際網路連接)之資料處理器61〇獲 得超微型特定資訊。超微型資訊可包含經保留以用於由超 微型小區使用的SID。另外,超微型資訊可包含由超微型 135136.doc 06- 200935932 UT 604利用以分別用於初始組態以及小區發信號/獲取及 訊務資源的啟動及蜂巢式資訊。啟動資訊可包含在起動時 利用以識別超微型小區的SID以及啟動NID,以及經利用 以與超微型小區通信以用於起動供應的啟動頻道。啟動資 5fl&lt;SID、NIDb00tstrap、頻道b。。⑻^可包括於經由耦接至供 應模組602之超微型小區(若在此小區與超微型υτ 6〇4之間 已建立通信)或經由巨集網路供應提供至超微型υτ 6〇4之 定製SDL中。 一旦超微型UT 604獲得包含上文列出之啟動資訊的定製 UT 604即可利用啟動nid及啟動頻道執行與超微型 小區之起始或配對常式。在一些態樣中,啟動程序由以非 常低的功率(例如,一瓦特之分率)輻射之超微型小區執 行,其中超微型UT 004接近於超微型小區而定位(例如,i 公尺内)。在特定態樣中,可利用啟動頻道以略過由超微 型小區利用之CSG,此係由於可假設在此接近範圍内,超 微型UT 604由超微型小區之擁有者操作。因此,在此等態 樣中,超微型UT 604最初可藉由利用由系統6〇〇提供之啟 動操作而包括於超微型小區之CSG中。 在與超微型小區之初始配對之後,供應模組6〇2可產生 用於與超微型小區行動通信之定製SDL。啟動SDL可在初 始獲取期間由超微型UT 604提供至超微型小區,該超微型 小區可將此SDL轉遞至資料處理器610。超微型SDL組態模 組608可修改啟動SDL,以包括超微型特定sid/nid及用於 與超微型小區蜂巢式通信之頻道。可將此資訊表示為 135136.doc •37· 200935932 &lt;SIDFemt。,NIDFeint。,頻道Femt。〉’從而指示操作之超微型 相關SID/NID/頻道。超微型UT 604與超微型小區之間的隨 後互動可利用超微螌相關資訊以常規超微型傳輸功率/距 離進行,其中UT 604利用超微型小區之CSG進行檢查。在 一些態樣中,鄰近小區之分析(例如’如上文圖5處描述)可 在上文描述之初始供應期間進行。因此’超微型資訊亦可 , 包括具有臨限或較大信號強度/品質之記入黑名單之外來 超微型小區,其可引起UT 604獲取或交遞至優於經組態之 參 本籍超微型小區的鄰近外來超微型小區。如所描述,系絶 600可提供利用初始超微型器件配對常式之分散式存取點 管理的有效機制。 圖7說明根據本發明之態樣之實例經整合超微型-巨集行 動環境700的方塊圖。行動環境700包含為UT 704提供Ga 無線服務的至少一巨集BS 702。因此,UT 704可在有利巨 集無線條件下或在較佳BS(706A、706B)不在足夠範圍内之 情況下,與巨集BS 702通信地耦接。 另外,環境700包含在巨集BS 702之覆蓋内之多個ge〇 708八、7088、708(:、7080(或 708人至 7080)。此等〇£0包 。 含至少兩個本籍GEO 708A、708D,其中UT 704與至少一 本籍超微型小區706A、706B相關聯。舉例而言,GEO 708A可包含住宅區域,其中用戶具有在此用戶之住宅處建 立之本籍超微型小區706A。另外,GEO 708D可包含商業 或工業區,其中用戶具有在辦公樓或其他商業區處建立之 第二本籍超微型小區706B。其他GEO 708B、708C為外來 135136.doc -38- 200935932 GEO ’其中用戶不具有本籍超微型小區(706A、706B)。 應瞭解’由環境700描繪之GEO 708A至708D可利用各種 標準界定。在一實例中,GEO 708A至708D可利用網路區 域性資訊(諸如巨集網路(702)之位置區域ID(LAI)或路由區 域ID(RAI))界定。在其他實例中,GEO 708八至7080可利 用政治/法定地理邊界(諸如區邊界、縣邊界、州邊界或其 類似者)界定。在其他實例中,GEO 708A至708D可基於與 本籍超微型小區706A、706B相關聯之用戶資料界定。因 此’例如,可利用與個別本籍超微型小區7〇6A、706D相 關聯之郵寄位址、郵遞區號或其他位置/區域識別符(例 如,全球定位系統)來界定至少個別本籍GEO 708A、 708D。在一些態樣中,可利用前述實例之組合來界定GE〇 708A、708D。 隨著UT 704在GEO之間行進,其可向服務BS報告UT 704當前位於其中之GEO之識別碼。服務BS可將GEO轉遞 至行動網路以更新UT 704之當前位置。另外,如本文描 述,可利用當前GEO以產生用於UT 704之定製SDL(例如, 適合BS視GEO之當前類型(本籍或外來)而被給予優於其他 BS之優選)。在集中式存取點管理架構中,網路可利用與 UT 704耦接之巨集BS 702或超微型小區(706A、706D)產生 及提供定製SDL至UT 704。如此項技術中已知,該網路可 利用(例如)當前位置資訊傳呼UT 704並遞送此資料。在分 散式存取點管理架構中’服務BS(702、706A、706B)視情 況在起動供應時產生及提供定製SDL至UT 704。在此狀況 135136.doc -39- 200935932 下’當UT 704行進至新的GEO且首次嘗試在新的GEO内的 犯上S主冊時’服務BS(702、706A、706B)可在必要時更新 該定製SDL。因此,利用SDL用於存取點管理可適應於UT 行動性且適應於動態網路(例如,包括新的巨集及/或超微 型BS部署)之可調適機制。 圖8說明根據本發明之態樣之實例定製SDL 806的方塊 圖。SDL 806可視情況在UT 8〇4起動時之啟動或配對常式 期間由存取點802利用無線通信提供至UT 804。SDL 806可 β 由UT 804參考以識別υτ 804當前定位於其中之特定GEO内 之可用存取點。此當前GEO可由存取點802廣播,或基於 位置量測(例如,GPS)等判定。 如所描繪,SDL 806包含三個不同的GEO,GEO 1、GEO 2及GEO 3。GEO 1與UT 804之本籍超微型小區(HFC)以及 一或多個巨集小區及一或多個外來超微型小區(AFC)相關 聯。因為本籍超微型小區含於GEO 1内,所以將此GEO指 示為本籍GEO。另外,每一存取點與一特定小區ID(例 藝 如,SID/NID/小區ID)相關聯,使用該特定小區ID,UT 804可識別特定存取點。亦給予每一存取點一優先權。給 .予GEO 1中之本籍小區高優先權,給予巨集存取點中等優 先權,且將GEO 1内之外來超微型小區記入黑名單(或視情 況給予低優先權)。因此,只要識別到本籍超微型小區之 信號且其升高到高於一相對較低臨限值,則UT 804將獲取 此小區。否則,選擇巨集小區。若識別到外來超微型小 區,則可忽略與此小區相關聯之信號。 135136.doc -40· 200935932 ❹ GEO 2及GEO 3均為外來GE0,其不包括與υτ 8〇4相關 聯之本籍超微型小區。在包含至少—外來超微型小區之 GEO 2中,給予所有超微型小區非較佳權,且給予巨集小 區高優先權。因此,只要巨集小區之信號高於一相對較低 臨限值,UT 804將選擇此小區。若不能區分巨集小區,則 可視情況存取外來超微型小區,以起始與行動網路之發信 號(若外來超微型小區允許此發信號在一些態樣中,UT 804可嘗試註冊為外來超微型小區上之客體I且獲得給 予外來超微型小區較高優先權(例如,中等或較佳狀態)的 專用飢。關於僅包括巨集小區之GEO 3,UT 804可連接 至巨集小區。應瞭解,無論何時町8〇4連接至非較佳小區 (或若較佳J、區之j5號降低至低於相對較低臨限值),UT 804皆可週期性地搜尋較佳小區以便識別及獲取此等小 區。因此,若UT 804連接至巨集小區但自GE〇 2行進至 GEO 1,則可最終識別本籍超微型小區。 除前述之外,SDL 806可指示由各種存取點利用之頻 道。在多個頻道可用之多載波環境中,UT 804可在此等頻 道内及/或此等頻道之間搜尋以識別小區,且在連接至中 等或非較佳小區時週期性地搜尋較佳小區。如所^緣, 肌_可視UT 804當前位於其中之特定GE〇而定I提供 網路存取點之選擇性判定以促進識別優於其他小區之較佳 小區。因此,存在獲得較佳小區之增加的可能性,從而引 起更有效的總體行動通信。 圖9描緣根據本發明之態樣之實例系統_的方塊圖,該 135136.doc 41 200935932 系統900包含一 BS 902及一或多個UT 904(例如,行動器 件)。如本文描述,BS 902可經組態以提供對全異類型之 行動網路存取點之選擇性存取。對於經組態以識別及區分 此等類型之存取點的UT 904,可由BS 902提供含有各種類 型存取點之識別資訊的定製SDL及此等存取點之優先權。 在UT 904未經組態以識別及/或區分不同類型之存取點的 情況下,可提供含有識別適合巨集網路存取點之資訊的 SDL ’從而使得UT 904能夠忽略非巨集存取點。 BS 902(例如,存取點…)可包含經由一或多個接收天線 906自一或多個UT 904接收信號及無線(0TA)訊息的接收器 910,及經由傳輸天線908將由調變器928提供之經編碼/經 調變之無線信號及訊息傳輸至一或多個UT 904的傳輸器 930。接收器910可自接收天線906接收資訊,且可進一步 包含一接收由UT 904傳輸之上行鏈路資料的信號接收者 (未圖示)。另外,接收器910可操作地與解調變所接收資訊 之解調變器912相關聯。經解調變之符號由處理器914分 析。處理器914耦接至儲存關於由bs 902提供之函式的資 訊的記憶體916。在一例子中,所儲存之資訊可包含用於 獲仔各種存取點ID及超微型特定資訊並產生至υτ 904之超 微型特定SDL之規則。另外,所儲存之資訊可包含經組態 以建立較佳及非較佳BS(902)之參數組。 另外,BS 902可包含利用UT(904)之能力且基於此等能 力疋製UT(904)之SDL的供應模組918。舉例而言,若UT為 具超微型能力之器件,則供應模組918可利用發信號介面 135136.doc -42- 200935932 920以與行動核心網路及/或由此網路維護之超微型特定資 料庫通信。發信號介面可獲得與具超微型能力之υτ(9〇4) 相關聯之用戶資訊,且可進一步自超微型資料庫獲得與此 υτ相關聯之本籍超微型小區。視情況,在BS 9〇2為超微型 小區BS之情況下,包括於CSG 924中之UT 904之用戶資訊 及超微型能力可儲存於記憶體916中以供bs 902之内部使 用。在獲得用戶及能力資訊時,可產生用於超微型UT 904 之定製SDL,從而將本籍超微型小區(902)建立為較佳小 區,且視情況將巨集小區及/或外來小區分別建立為中等 或低優先權小區及記入黑名單之小區。在一些態樣中,Bs 902可包含資料介面922以耦接至網際網路,用於與其他超 微型BS通信’或用於耦接至行動核心網路(例如,若 902為超微型小區BS)。 根據一或多個其他態樣,BS 902可包含用於初始υτ供 應之啟動模組926。如本文描述,啟動模組926可利用啟動 節點ID及/或啟動頻道以與超微型υτ通信以用於初始供 應。在初始供應期間可利用啟動模組926以將UT(9〇4)建立 為CSG 924之部分。在此狀況下,啟動模組926可進一步提 供較低功率傳輪參數用於處理器914以將啟動通信限制至 相對較短範圍(例如,小於1公尺),以減輕在啟動程序期間 未經授權UT與BS 902耦接的可能性。此外,啟動模組926 可在此初始供應期間自適合UT(904)獲得相鄰無線條件, 以使得供應模組918能夠根據相鄰網路信號定製sdl。因 此,例如,可將相鄰外來超微型小區記入黑名單以防止包 135I36.doc -43- 200935932 括於CSG中之UT(904)執行至外來超微型小區之無效交 遞《結果,與轉移至其他小區相對照,υτ(9〇4)可更可能 保持與BS 902耦接。 圖10說明包含UT(例如,行動器件)1002之實例系統1〇〇〇 的方塊圖,UT 1002可經組態以與BS 1〇〇4介接β υτ 1〇〇2 可經組態以與無線網路之一或多個此等BS i 〇〇4(例如,存 取點)無線耦接。因此,例如,如此項技術中已知,υτ 1002可在FL頻道上接收來自Bs 1〇〇4的無線信號,且在rl 頻道上回應於無線信號及訊息。此外,UT 1002可自BS 1004獲得系統判定資訊以在至無線網路之存取點之間進行 選擇性地挑選。在一些態樣中,υτ 1〇〇2可提供^^^及/或用 戶特疋資汛以促進基於UT 1〇〇2之能力產生定製SDL·。如 本文描述,定製SDL可(例如)將一或多個類型的存取點建 立為較佳或非較佳存取點以促進此選擇性網路存取^ UT 1002包括接收信號之至少一天線1〇〇6(例如,包含輸 入介面之傳輸接收器或此等接收器之群組)及對所接收信 號執行典型動作(例如,濾波、放大、降頻轉換等)之接收 器1008 »根據至少一些態樣,處理器1〇12可選擇性地分析 自解調變器1010接收之信號之部分,且獲得關於選定基地 口( 1004)或某類型的基地台的同步及/或控制資訊。一般而 s,無線地發送由調變器1028提供之經調變符號的天線 1006及傳輸器ι〇3〇(統稱為收發器)可經組態以促進與基地 台1004之無線資料交換。 天線1006及接收器1〇〇8亦可與解調變器1〇1〇耦接,該解 135136.doc •44 - 200935932 調變器1010可解調變所接收之符號且將其提供至處理器 1012以用於評估。應瞭解,處理器1012可控制及/或參考 UT 1002 之一或多個組件(10〇6、1008、1010、1〇14、 1016、1018、1020、1022、1024、1026、1028)。此外, 處理器1012可執行一或多個模組、應用、引擎或其類似者 (1016、1018、1022、1024、1026),其包含關於執rUT 1002之功能的資訊或控制。舉例而言,此等功能可包括掃 描所接收無線信號之信號強度及/或品質統計,利用定製 SDL以選擇性地存取或交遞至特定BS(1〇〇4)或若干類型的 BS或其類似操作,如本文描述。 UT 1002可另外包括可操作地耦接至處理器1〇12之記憶 體1014。記憶體1〇14可儲存待傳輸、待接收等之資料,及 適合進行與遠端器件(1004)之無線通信的指令(1〇2〇) ^此 外’記憶體1014可儲存上文由處理器1〇12執行之模組、應 用、引擎等(1016、1018、1022、1024、1026)。 除上述之外,處理器1〇 12及記憶體1014可耦接至再選擇 模組1016,該再選擇模組1016可執行基地台再選擇以獲取 網路存取點(1004)或識別及交換至較佳存取點(丨〇〇4)。再 選擇模組HH6可自獲自BS 1004且儲存於記憶體1〇14中之 疋製SDL獲得此方向。再選擇可包含掃描在天線丨刪及接 收器1008處獲得之無線仏號以識別此等信號之小區及將 該等小區ID與定製SDL相比較。 為促進產生疋製SDL,處理器1〇12可提供識別υτ 1〇〇2 之資料或來自儲存於記憶體1014中之用戶概況1〇2〇之與用 135136.doc -45- 200935932 戶相關聯之資料。可利用用戶資料以建立UT 1002之本籍 GEO(例如,基於用戶位址、郵遞區號或類似資料)。在一 些態樣中,處理器1012可經由UT 1002之使用者介面 (UI)(未描繪)詢問使用者以獲得用戶資料(諸如建立本籍 GEO之位置資料)或識別UT 1002之資料(諸如UT 1002之電 話號碼、序列號、MSI、IMSI或類似資料)。另外,自UI獲 得之用戶概況1020及/或資訊可指示UT 1002之超微型能❹ 200935932 “一” should be understood broadly to mean “one or more”. As used herein, the term “inference generally refers to the introduction or inference of a system through events and/or acquisitions”. Environment and /: The process of making the state. Inference can be used to identify a particular situation or action: or (10) such as to generate a probability distribution over the state. Inference can be probabilistic, that is, based on the consideration of data and events to calculate the state and distribution of the state of interest. Inference can also refer to techniques used to construct a more detailed event from a group of events and/or data. Regardless of whether the events are closely related in time, and regardless of whether the event and the material are from one or several events and data sources, the inference is based on the events observed by the group and/or the stored event data to arrive at new events or actions. Construction. Referring to the drawings, FIG. 1 illustrates an exemplary wireless communication system that can implement various disclosed embodiments and aspects configured to support a number of users. As shown in FIG. 1, system 100 is provided for a plurality of cells (such as macro cells 102a, 102b, 102c, 102d, l〇2e, 102f, l2g (or macro cells 102a through 102g)) Communication, where each cell is served by a respective access point (AP) 104a, 104b, 104c, l4d, 104e, 104f, l4g (or, APs 104a through 104g). Each of the cells i 〇 2a to l 〇 2g may be further divided into one or more sectors. The respective UTs 106a, 106b, 106c, 106d, 106e, 106f, 106g, 106h, 106i, 106j, 106k (or UTs 106a to 106k) are dispersed in the system. For example, depending on whether the ATs (106a to 106k) are active and whether they are in soft handover, each AT 106a to 106k may be on the forward link (FL) and/or the reverse link at a given time ( RL) communicates with one or more APs 104a through 104g. The wireless communication system 100 can provide services over a larger geographic area; for example, a macro cell to a location of 1 to 28 can cover several adjacent blocks. 2 depicts an exemplary communication system 2 for enabling the deployment of BSs (e.g., macro Bs, ultra-mini bs) within a network environment. The system includes a plurality of BSs including sub-micro BSs 210, each of which is installed in a corresponding small-scale network environment. Examples of small-scale network environments may include user residences, businesses, indoor/outdoor facilities, and the like. The ultra-mini 88 21〇 can be configured to serve the associated UT 22〇 (eg, included in the CSG associated with the pico BS 210), or as the case may be outside or a guest 〇 22 22〇 (eg, not for the ultra-miniature Configured by the CSG of BS 210). Each of the pico BSs 21 is further coupled to a DSL router (not shown) or an electrical data modem, a broadband connection over a power line, a satellite internet connection, or a similar broadband internet connection (not shown). Internet 240 and mobile operator core network 25〇. To implement the wireless service via the pico BS 210, the owner of the pico 210 subscribes to an action service (e.g., 3G mobile service) that is provisioned via the mobile operator core network. In turn, the UT 220 can operate in a macrocelled cellular environment and/or a residential small scale network environment using the various techniques described herein. Thus, at least in some of the disclosed aspects, the ultra-miniature Bs 21〇 &quot;T is compatible with any suitable UT 220 back lake. In addition, the 'UT 220 can be serviced by a predetermined number of ultra-micro bs 21s', in particular in addition to the jumbo cell mobile network 250, especially by the ultra-micro BS 210 resident in the respective user's residence, business district or indoor/outdoor facility 230. Service, and can not be in a soft handover state with the macro network 250. It should be understood that although the aspects described herein utilize the 3GPP terminology, it should be understood that the aspects can also be applied to 3Gpp technology 135136.doc -27- 200935932 (version 99 [Rel99], Rel5, Rel6, Rel7) and 3GPP2 technology. (1 xRTT, 1 xEV-DO RelO, RevA, RevB) and other known and related technologies. FIG. 3 illustrates a block diagram of an example system 300 for providing centralized access point management in a mobile communication environment. Suitable for the mobile environment can include GA macro collection 'points (for example, in some cases set to GA's macro cell, micro-small area, micro-cell or even ultra-micro cell), and RA ultra-mini memory with limited CSG Take a point. Because system 300 is centralized, access point management can be provided to all UTs served by multiple BSs or by the network of the BS. As an illustrative example, if system 300 is located at a base station controller (BSC) that manages a number of BSs for a base station subsystem (BSS), then access point management may be provided by system 300 for each BS of the BSS. Similarly, if the system 300 is located at a Mobile Switching Center (MSC) or a Serving GPRS Support Node (SGSN) of a system utilizing a General Packet Radio System (GPRS), access can be provided to all BSs served by the MSC and/or SGSN. management. Alternatively or in addition, system 300 can be located within the operator's core network, enabling access point management to be managed centrally at the core network for all BSs coupled to the core network. In some cases, system 300 can be deployed in a centralized network of ultra-micro cells, on an internet server, or within the core network of an operator. (eg, the Internet gateway of the network) ) to facilitate access management for each of the femto cells. System 300 includes a provisioning module 302 that facilitates selection of access points to a UT coupled to a mobile network. The provisioning module 302 can generate a system determination list 135136.doc • 28· 200935932 (SDL) that can be utilized by the UT to select among a plurality of available access points to the mobile network (see, for example, Figure 8 below). Additionally, the provisioning module 302 can be customized with respect to the UT based at least on the ultra-micro capabilities of the UT. Thus, for example, a first type of SDL can be customized for a UT without sub-micro capabilities, and a second type of SDL can be customized for a sub-capacity UT. In addition, the second type can be individually processed for each sub-micro capability UT to, for example, identify sub-micro cells that are permitted to access the network of the ultra-micro UT. To customize the SDL, the provisioning module 302 can include an SDL module 308 that obtains UE-specific and picocell specific data from the UE-Subminiature Profiler 306. The communications processor 304 can be coupled to various external sources for information. For example, the provisioning module 302 can utilize the communication processor 304 to couple with a particular femtocell (eg, via an internet gateway that communicates with the femtocell via the internet) to obtain picocell material or The data of the UT coupled to the femto cell (eg, MSI, IMSI, electronic serial number [ESN] or possibly unique ID of the UT). Additionally or alternatively, communication processor 304 can utilize a macro network (not depicted) coupled to the pico UT to obtain this information. In other aspects, the communications processor can be coupled to a subminiature library (e.g., see Figure 4 below) or to the operator's home location register (HLR), where the register stores the pico UT data. The information obtained by the communication processor 304 is provided to the UE-Subminiature Profiler 306 for retrieval of relevant information. This information may include the SID of the serving BS (e.g., the subminiature SID reserved for the femto cell, the macro SID), and a subset of the NID and/or the cell ID of the cell associated with the SID. In addition, the information captured may include the ID information of the UT attempting to register on the mobile network. The SDL module 308 can generate a UT for coupling with the macro BS, a UT that is not capable of 135136.doc -29-200935932 (at least partially determined from UT data), or a UT that is not in the home GEO. Preset SDL (for example, PRL). The preset SDL may contain a list of macro SID/NIDs (or other node IDs, such as subnet IDs in an EV-DO system) to which the UT can connect. In some aspects, as discussed in more detail below, the SDL can establish one or more SID/NIDs as preferred IDs. For custom SDL, SDL module 308 can provide SDL with information about a particular UT or cell serving the UT. Thus, for example, if the particular UT is a sub-micro capable UT, the SID reserved for the pico BS can be included in the custom SDL. By utilizing this custom SDL, the UT can identify signals including reserved SIDs as originated from the picocell. Further, the customized SDL can include a subset of NIDs and/or cell IDs associated with the pico SIDs. Thus, the UT can ignore signals that do not include a subset of NIDs/Cell IDs, or simply analyze signals that include a subset of NIDs/Cell IDs in conjunction with signals that include different SIDs (e.g., macro SIDs). In some aspects, the subset of NID/cell IDs can include one or more NID/cell IDs of the home micro-cell associated with the registered pico UT. In accordance with some aspects of the present invention, the SDL module 308 can establish one or more system and/or network IDs as preferred, and establish one or more other systems and/or network IDs as non-preferred. There is no particular preference for a system and/or network id or a combination thereof. Thus, the UT can select among one or more signals based on signal strength and/or quality, and SID/NID preferred status. In the case of providing the UT with a custom SDL with a preferred SID/NID, the UT may continue to search for a preferred SID/NID, even if the cell is currently coupled to a non-preferred cell or has a non-preferred state. In addition, if the UT obtains a better 135136.doc -30·200935932 SID/NID, a high threshold can be established above which the UT will search for other BSs. Thus, as a specific example, the UT may ignore neighboring cells when coupled to a preferred cell unless the signal strength of the preferred cell is reduced below a relatively low threshold, or a signal between the preferred cell and the neighboring cell The difference in intensity rises above a relatively high threshold, which favors neighboring cells. According to other aspects, the SDL can be configured according to one or more GEOs. Therefore, the available SID/NID in the GEO in which the cell that obtained the registration request is resident may be included in the SDL. In some aspects, the SDL may further include a neighboring GEO and an associated SID/NID in the event that the UT travels outside of the current GE0. For SDL customized for the pico UT, if the current GE0 is the home GE0 associated with the pico UT, the current GE0 may contain the macro BS SID/NID and one or more subminiature SID/NIDs. In addition, the ultra-small SID/NID can be given a better state, thereby guiding the UT to bias the picocell relative to other types of network access points as discussed above. If the current GEO is not a native GEO, the SDL can be configured to not contain the pico SID/NID, allowing the pico UT to ignore unwanted signaling to the alien picocell. Therefore, the ultra-micro cell SID/NID can be listed as preferred and the home micro-cell can not be found when it is expected to find the home micro-cell (for example, in the home GEO or multiple home GEO) ( For example, in the case of the home of GEO, the ultra-small 'zone SID/NID is not included and the custom SDL is utilized to save additional signaling to the pico UT. 4 illustrates a block diagram of an example system 400 that provides access point management for UTs 404A, 404B having different access capabilities. System 400 can include 135136.doc -31 - 200935932 with a supply module 4〇2 for generating SD1 for the UT based on individual capabilities. The provisioning module 402 can receive a registration request from an access point (such as a macro access point 4.06A or a pico access point 406B) at the communication processor 408, including registration information for the UT 404A, 404B (eg, MSI, IMSI, esn, etc.). This ID information can be used to obtain user information at various network data stores (416). For example, if the registration UT is ultra-micro υτ 4〇4B, the UE-cell profile parser 412 can access the network sub-miniature library 414. The subminiature repository 414 can store a user profile 416 indicating that the pico UT (404A) grants users access to a particular picocell (4〇6B), and the hypercapacity cell (406B) is a subminiature for a particular user.本τ (404Α) of the local community. In addition, database 414 can indicate the associated GEO for each picocell (406A) and the home GEO for each pico UT (404A). Thus, using the ID of the registered pico UT 404A, the provisioning module 402 can identify the femtocell (406B) associated with the ID and the GEO of such cells. If the pico UT 404A is in the home GEO, the custom SDL can be generated by the SDL module 422 to identify the home microcell and establish the cell as a better cell. Otherwise, the SDL may include a macro cell SID/NID to direct the pico UT to search and/or remain coupled to the macro cell. Instead of or in addition to the foregoing, the provisioning module 402 can include a data interface 418 that can be coupled to the Internet and/or the mobile core network 420. Thus, the data interface 41 8 can communicate with the femto cell 406B using an internet gateway (not depicted) utilized by the cell 406B. The data interface can be used to query the picocell 406B and obtain the ID information of the cell and/or the UT (404B) coupled to the femtocell 406B. In addition, the data interface can communicate with the macro core 135136.doc -32· 200935932 heart network 420 to obtain user information. In some aspects, this information may include user ID information. The user (1) information can be utilized to establish a particular GE port for the femto cell 406B. As an example, a physical address (e.g., a mailing address), a postal code, and/or the like can be utilized to establish a pico GE. Thus, the pico GEO can be a relatively small area around the femto cell 406B, thereby limiting the number of other access points (4〇6A) included in the GEO of the femto cell. If the registered UT is a pico UT (404A), and the local GEO of the super micro SUT (4〇4A) is the same as the GEO of the ultra micro cell 406Β, the ultra-mini GEO and the ultra-micro cell 4〇6BiSID/NlD/cell can be SDL mode. Group 422 is included in the custom SDL and this custom sdl is provided to this UT. Otherwise, an SDL containing a macro BS SID/NID/cell ID may be generated and provided to the UT&apos; so that the macrocell signal is still ignored and the macro signal is instead searched. FIG. 5 depicts a block diagram of an example system 5A that provides distributed access point management for the UT 504. As depicted, system 500 can include one or more subminiature cells 502 and one or more UTs including subminiature UTs 504. The femto cell 502 can include an interface application 506 configured to provide wireless data exchange between the ultra-micro υτ 504 and the home micro-cell 502 associated with the UT 504. The interface application 506 can be utilized to generate a custom SDL dedicated to the femto UT 504 from a similar manner as described above but from the ultra-micro cell 502 rather than the centralized network location. In addition, the interface application 506 can utilize the channels typically utilized by the femto cell 502 for wireless communication, or can utilize a special provisioning or launch channel for providing customized SDL (e.g., see Figure 6 below). The interface application 506 can be utilized by the home ultra-micro cell 502 to perform a self-configuration procedure with the macro core network 518 via the connection to the 135136.doc-33-200935932 internet. Thus, for example, the femtocell 502 can obtain information about neighboring cells of the femto cell 5〇2 (including macro cells and other sub-micro cells X not depicted). In addition, the femtocell 502 can obtain information indicating whether these other subminiature cells are the home microcells of the pico UT 504 or provide limited access or no access to the pico UT 504. The interface application 506 can include an SDL provisioning module 512 that can generate a customized SDL for the ultra-micro υτ 5〇4. If the ultra-micro υτ 504 is included in the CSG associated with the pico Φ cell 502, the SDL may be provisioned to designate the femto cell 502 and any neighboring home micro-cells as preferred cells, and designate the neighboring macro cells as Lower priority, and the adjacent alien picocell is designated as a non-preferred cell. If the ultra-miniature ^^5〇4 is not included in the CSG, the femto cell 502 can check the guest user group (GSG) to determine if the ultra-miniature υτ 504 should be accessed by the guest. The object access may include full access (same as the home microcell) or limited access, limited access limit bandwidth, ^ action resources, and/or the amount of time that the guest UT can utilize the femto cell 5〇2. For the guest SDL, the femtocell 5〇2 can be established as a better cell, and the neighboring cell (macro or pico) can be established as a lower priority cell. Depending on the situation, the guest SDL may not provide special preferences for the femto cell 5〇2 and neighboring cells, thereby allowing the guest UT to acquire and access neighboring cells based on signal strength. In some aspects of the invention, the ultra-miniature υτ 5〇4 Interface application 506 can be utilized to provide SDL to femto cell 5〇2. Thus, the preset SDL of 135136.doc -34-200935932 can be forwarded to the interface application 506, for example, via the Wireless Provisioning Function (OTAF) 520 and the Macro BS 522 from the Mobile Core Network 5丨8. The SDL provisioning module 512 can then modify the preset SDL to generate a customized SDL, as discussed above, the custom SDL includes the SID/NID/Cell ID of the femto cell 5〇2 of the preferred cell and the neighboring cell is designated It is a non-preferred cell. Once the custom SDL is generated and provided to the pico υ 5 〇 4, the pico UT 504 and the pico cell 5 〇 2 can utilize conventional wireless communication (eg, using a typical operating channel of the femto cell 502, such as with, for example, Start or supply channel comparison). Periodically, the femto cell 5〇2 and the pico UT 504 can participate in the interface application 506 (using a special start frequency as appropriate) to update the SDL provision at the SDL provisioning module 512. For example, via the interface application 506 The periodic use adds a change in the neighboring cell/cell ID to the SDL utilized by the pico UT 504. Thus, the system 5 can utilize the interface application 5〇6 and the SDL provisioning module 512 to generate and update the customized SDL to reflect the changing network conditions. The custom SDL can reflect the dominant signal conditions in the vicinity of the femto cell 502 in accordance with a particular aspect of the present invention. In such aspects, the ultra-miniature 504 can be coupled to the picocell 502 via interface application 506 for SDL supply. During this provisioning period, the pico UT 504 can utilize the signal analysis module 508 to monitor and analyze the wireless signals of the adjacent macro and subminiature Bs (522). Signal strength, signal quality, and the like can be obtained using signal analysis module 508. In addition, the signal analysis module 508 can identify the SID/NID/cell id information transmitted with each signal to identify the BS (522) that transmitted the signal. This information can be provided to the picocell 502 via the reporting module 510. In this case, the SDL provisioning module 512 can identify neighboring cells (522) that cause potential strong 135l36.doc -35 - 200935932 disturbances, or have strong enough signals to cause the ultra-miniature 504 to attempt to acquire or exchange to such signals. . If the ultra-micro υτ 5〇4 is included in the CSG or GSG of the picocell 502, the Bellow SDL provisioning module 512 can blacklist the neighboring alien microcells to prevent the ultra-micro υτ 5 from trying to acquire such cells. . During the SDL update provision as discussed above, the new alien picocell determined by signal analysis module 508 may also be blacklisted as necessary. Thus, a custom SDL can be provisioned to blacklist only neighboring cells that may interfere with the pico UT 504 or have the pico UT 504 handed over to such cells, thereby sharing the common GE with the femto cell 5〇2. All of the picocells are counted in the blacklist to provide a relatively small blacklist. 6 depicts a block diagram of an example system 600 that facilitates initial startup provisioning of a terminal device coupled to a mobile network. System 6A includes a provisioning module 602 coupled to the pico UT 604 via a BS_UT interface, which may include a wireless transceiver coupled to an ultramicro plastic cell device (not depicted) of the supply module and the transceiver thereof Utilize the wireless channel. The custom SDL for the pico UT 604 can be generated using the start-up supply as described herein, and a custom SDL is provided for selection and delivery to the network Bs identified in the SDL. The provisioning module 602 includes an activation configuration module 6〇6 that establishes a submicrocell coupled to the supply module 〇2 and a startup supply to the pico UT 604. The boot configuration module 606 can obtain sub-micro specific information from a data processor 61 that can communicate with the mobile operator's network (e.g., via an internet connection coupled to the picocell). The ultra-micro information may include SIDs reserved for use by the picocell. In addition, the ultra-miniature information may be utilized by the Subminiature 135136.doc 06-200935932 UT 604 for initial configuration and cell signaling/acquisition and activation of the traffic resources and cellular information. The activation information may include a SID utilized at startup to identify the SID of the femto cell and activating the NID, and a boot channel utilized to communicate with the femtocell for initiating provisioning. Startup capital 5fl &lt;SID, NIDb00tstrap, channel b. . (8) can be included in the ultra-micro cell coupled to the provisioning module 602 (if communication has been established between the cell and the ultra-micro υ 〇 〇 6 〇 4) or via the macro network supply to the ultra-mini υ 〇 〇 〇 〇 〇 Customized in SDL. Once the femto UT 604 obtains the customized UT 604 containing the activation information listed above, the start or pairing routine with the femto cell can be performed using the initiating nid and the initiating channel. In some aspects, the initiation procedure is performed by a picocell that radiates at a very low power (eg, one watt fraction), wherein the pico UT 004 is located close to the picocell (eg, within i meters) . In a particular aspect, the enable channel can be utilized to bypass the CSG utilized by the femto cell, since the sub-micro UT 604 can be operated by the owner of the femto cell since it can be assumed to be within this proximity. Thus, in such an aspect, the pico UT 604 can initially be included in the CSG of the picocell by utilizing the booting operation provided by the system 6A. After initial pairing with the femto cell, the provisioning module 〇2 can generate a customized SDL for mobile communication with the femto cell. The initiating SDL may be provided by the pico UT 604 to the femto cell during initial acquisition, which may forward this SDL to the data processor 610. The subminiature SDL configuration module 608 can modify the boot SDL to include a subminiature specific sid/nid and a channel for cellular communication with the picocell. This information can be expressed as 135136.doc •37· 200935932 &lt;SIDFemt. , NIDFeint. , channel Femt. 〉' thus indicates the operation of the ultra-miniature related SID/NID/channel. The subsequent interaction between the pico UT 604 and the picocell can be performed using conventional ultra-micro transmission power/distance using ultra-micro-related information, where the UT 604 is checked using the CSG of the picocell. In some aspects, analysis of neighboring cells (e.g., as described above at Figure 5) can occur during the initial provisioning period described above. Therefore, 'ultra-micro information can also be included in the ultra-micro cell with a threshold or a large signal strength/quality blacklist, which can cause the UT 604 to acquire or hand over to the configured sub-micro cell. Adjacent to exotic micro-cells. As described, the system 600 can provide an efficient mechanism for decentralized access point management using the initial ultra-micro device pairing routine. Figure 7 illustrates a block diagram of an integrated ultra-mini-macro-running environment 700 in accordance with an example of aspects of the present invention. The mobile environment 700 includes at least one macro BS 702 that provides Ga wireless service to the UT 704. Thus, UT 704 can be communicatively coupled to macro BS 702 under favorable macro radio conditions or if the preferred BS (706A, 706B) is not within a sufficient range. In addition, the environment 700 includes a plurality of ge 708 VIII, 7088, 708 (:, 7080 (or 708 to 7080) within the coverage of the macro BS 702. These 〇 0 packages. Contains at least two native GEO 708A 708D, wherein the UT 704 is associated with at least one of the home micro-cells 706A, 706B. For example, the GEO 708A can include a residential area in which the user has a home micro-cell 706A established at the home of the user. The 708D may comprise a commercial or industrial area in which the user has a second home micro-cell 706B established at an office building or other business district. Other GEO 708B, 708C are foreign 135136.doc -38- 200935932 GEO 'where the user does not have a home Ultra-micro cells (706A, 706B). It should be appreciated that the GEO 708A through 708D depicted by environment 700 can be defined using various standards. In one example, GEO 708A through 708D can utilize network regional information (such as a macro network ( 702) Location Area ID (LAI) or Routing Area ID (RAI) is defined. In other examples, GEO 708 VIII to 7080 may utilize political/legal geographic boundaries (such as zone boundaries, county boundaries, state boundaries, or the like) In other examples, GEOs 708A through 708D may be defined based on user profiles associated with the home micro-cells 706A, 706B. Thus, for example, mailing locations associated with individual home micro-cells 〇6A, 706D may be utilized. Address, postal area code or other location/area identifier (e.g., global positioning system) to define at least individual home GEO 708A, 708D. In some aspects, a combination of the foregoing examples may be utilized to define GE 〇 708A, 708D. The UT 704 travels between GEOs, which can report to the serving BS an identification code of the GEO in which the UT 704 is currently located. The serving BS can forward the GEO to the mobile network to update the current location of the UT 704. Additionally, as described herein, The current GEO can be utilized to generate a custom SDL for the UT 704 (eg, preferred for the BS to view the current type of GEO (the local or foreign) is preferred over other BSs). In a centralized access point management architecture, The network may utilize a macro BS 702 or a femto cell (706A, 706D) coupled to the UT 704 to generate and provide a customized SDL to UT 704. As is known in the art, the network may utilize, for example, The location information pages the UT 704 and delivers the material. In the decentralized access point management architecture, the 'service BS (702, 706A, 706B) optionally generates and provides a customized SDL to UT 704 when the provisioning is initiated. In this case 135136. Doc -39- 200935932 Next 'When the UT 704 travels to the new GEO and first attempts to commit the S main volume within the new GEO', the serving BS (702, 706A, 706B) can update the customized SDL as necessary. Thus, the use of SDL for access point management adapts to UT mobility and adapts to adaptive mechanisms of dynamic networks (e.g., including new macros and/or femto BS deployments). Figure 8 illustrates a block diagram of a custom SDL 806 in accordance with an example of aspects of the present invention. The SDL 806 may optionally be provided to the UT 804 by the access point 802 during wireless communication via the UT 8〇4 startup or pairing routine. SDL 806 may be referenced by UT 804 to identify available access points within a particular GEO in which υτ 804 is currently located. This current GEO can be broadcast by access point 802, or based on location measurements (e.g., GPS). As depicted, SDL 806 contains three different GEOs, GEO 1, GEO 2, and GEO 3. GEO 1 is associated with the UT 804's home micro-cell (HFC) and one or more macro cells and one or more alien sub-micro cells (AFCs). Since the home micro-cell is included in GEO 1, this GEO is indicated as the GEO. In addition, each access point is associated with a particular cell ID (e.g., SID/NID/cell ID), and with that particular cell ID, UT 804 can identify a particular access point. Each access point is also given a priority. Give high priority to the local community in GEO 1, give the medium access priority to the macro access point, and blacklist the alien micro-cells in GEO 1 (or give low priority depending on the situation). Therefore, the UT 804 will acquire the cell as long as it identifies the signal of the home microcell and it rises above a relatively low threshold. Otherwise, select the macro cell. If an alien picocell is identified, the signal associated with the cell can be ignored. 135136.doc -40· 200935932 ❹ GEO 2 and GEO 3 are foreign GE0s, which do not include the local micro-cells associated with υτ 8〇4. In GEO 2, which contains at least an alien picocell, all femtocells are given a non-preferred right and the macrocell is given high priority. Therefore, as long as the signal of the macro cell is above a relatively low threshold, the UT 804 will select this cell. If the macro cell cannot be distinguished, the alien pico cell can be accessed as needed to initiate signaling with the mobile network (if the alien pico cell allows this signaling in some aspects, the UT 804 can attempt to register as an alien. The object I on the picocell is given a special hunger giving a higher priority (e.g., medium or better state) to the alien picocell. For GEO 3, which only includes the macrocell, the UT 804 can be connected to the macrocell. It should be understood that the UT 804 can periodically search for a better cell whenever the connection is made to a non-preferred cell (or if the better J, the number j5 of the zone is lowered below a relatively low threshold). Identifying and obtaining such cells. Therefore, if the UT 804 is connected to the macro cell but travels from GE 〇 2 to GEO 1, the home micro-cell can be finally identified. In addition to the foregoing, the SDL 806 can indicate various access points. Channels utilized. In a multi-carrier environment where multiple channels are available, the UT 804 can search within such channels and/or between such channels to identify cells, and periodically when connected to a medium or non-better cell. Search for better communities As a matter of course, the muscle_visual UT 804 is currently located in a particular GE, and I provides a selective decision of the network access point to facilitate identification of better cells than other cells. Therefore, there is a better cell. Increased likelihood, resulting in more efficient overall action communication. Figure 9 depicts a block diagram of an example system _ according to aspects of the present invention, the 135136.doc 41 200935932 system 900 includes a BS 902 and one or more UTs 904 (eg, a mobile device). As described herein, BS 902 can be configured to provide selective access to disparate types of mobile network access points. For configuration to identify and distinguish between these types of storage Taking the UT 904, the custom SDL containing the identification information of the various types of access points and the priority of the access points can be provided by the BS 902. The UT 904 is not configured to identify and/or distinguish between different types of storage. In the case of a dot, an SDL can be provided that contains information identifying the appropriate macro access point so that the UT 904 can ignore the non-clustered access point. The BS 902 (eg, access point...) can include Or multiple receiving antennas 906 Or a plurality of UT 904 receivers 910 that receive signals and wireless (OTTA) messages, and transmit encoded/modulated wireless signals and messages provided by modulator 928 to one or more UTs 904 via transmission antenna 908 Transmitter 930. Receiver 910 can receive information from receive antenna 906 and can further include a signal recipient (not shown) that receives uplink data transmitted by UT 904. Additionally, receiver 910 is operatively coupled A demodulation transformer 912 that modulates the received information is associated. The demodulated symbol is analyzed by processor 914. Processor 914 is coupled to memory 916 that stores information about the function provided by bs 902. In one example, the stored information may include rules for obtaining various access point IDs and sub-miniature specific information and generating hyper-specific SDLs to υτ 904. Additionally, the stored information can include a set of parameters configured to establish a better and non-better BS (902). In addition, BS 902 can include a provisioning module 918 that utilizes the capabilities of UT (904) and based on such capabilities to throttle the SDL of UT (904). For example, if the UT is a device with ultra-micro capabilities, the provisioning module 918 can utilize the signaling interface 135136.doc -42 - 200935932 920 to be ultra-miniature specific to the mobile core network and/or the network maintenance Database communication. The signaling interface can obtain user information associated with the ultra-micro capability υτ (9〇4), and the home micro-cell associated with this υτ can be further obtained from the ultra-micro database. Depending on the situation, in the case where BS 9〇2 is a picocell BS, user information and subminiature capabilities of UT 904 included in CSG 924 can be stored in memory 916 for internal use by bs 902. When the user and capability information is obtained, a customized SDL for the pico UT 904 can be generated, thereby establishing the home microcell (902) as a better cell, and depending on the situation, the macro cell and/or the foreign cell are respectively established. It is a medium or low priority cell and a blacklisted cell. In some aspects, Bs 902 can include a data interface 922 to couple to the Internet for communicating with other pico BSs or for coupling to a mobile core network (eg, if 902 is a picocell BS) ). In accordance with one or more other aspects, BS 902 can include a boot module 926 for initial υτ supply. As described herein, the boot module 926 can utilize the boot node ID and/or the boot channel to communicate with the pico υτ for initial provisioning. The boot module 926 can be utilized during initial provisioning to establish the UT (9〇4) as part of the CSG 924. In this case, the startup module 926 can further provide lower power transfer parameters for the processor 914 to limit the initiation communication to a relatively short range (eg, less than 1 meter) to mitigate during the startup procedure. The possibility of authorizing the UT to be coupled to the BS 902. In addition, the boot module 926 can obtain adjacent wireless conditions from the appropriate UT (904) during this initial provisioning to enable the provisioning module 918 to customize the sdl based on the neighboring network signals. Thus, for example, neighboring alien picocells can be blacklisted to prevent the UT (904) included in the CSG from performing the invalid handover to the alien picocell, and the result is transferred to the 135I36.doc-43-200935932 In contrast to other cells, υτ (9〇4) may be more likely to remain coupled to BS 902. 10 illustrates a block diagram of an example system 1A including a UT (eg, mobile device) 1002 that can be configured to interface with BS 1〇〇4 υτ 1〇〇2 can be configured to One or more of the wireless networks such as BS i 〇〇 4 (eg, access points) are wirelessly coupled. Thus, for example, as is known in the art, υτ 1002 can receive wireless signals from Bs 1〇〇4 on the FL channel and respond to wireless signals and messages on the rl channel. In addition, the UT 1002 can obtain system decision information from the BS 1004 for selective selection between access points to the wireless network. In some aspects, υτ 1〇〇2 may provide ^^^ and/or user-specific resources to facilitate the creation of custom SDLs based on the capabilities of UT 1〇〇2. As described herein, a custom SDL can, for example, establish one or more types of access points as preferred or non-preferred access points to facilitate this selective network access. UT 1002 includes receiving signals for at least one day. Lines 1〇〇6 (eg, a transmission receiver including an input interface or a group of such receivers) and a receiver 1008 that performs typical actions (eg, filtering, amplification, down-conversion, etc.) on the received signal » according to In at least some aspects, the processor 110 can selectively analyze portions of the signals received from the demodulation transformer 1010 and obtain synchronization and/or control information about the selected base port (1004) or a type of base station. Typically, the antenna 1006 and the transmitter ι〇3〇 (collectively referred to as transceivers) that wirelessly transmit the modulated symbols provided by the modulator 1028 can be configured to facilitate wireless data exchange with the base station 1004. The antenna 1006 and the receiver 1〇〇8 can also be coupled to the demodulator 1〇1〇, the solution 135136.doc •44 - 200935932 The modulator 1010 can demodulate the received symbol and provide it to the processing. The device 1012 is for evaluation. It should be appreciated that the processor 1012 can control and/or reference one or more components of the UT 1002 (10〇6, 1008, 1010, 1〇14, 1016, 1018, 1020, 1022, 1024, 1026, 1028). In addition, processor 1012 can execute one or more modules, applications, engines, or the like (1016, 1018, 1022, 1024, 1026) that contain information or control regarding the functionality of rUT 1002. For example, such functions may include scanning signal strength and/or quality statistics of received wireless signals, using custom SDLs to selectively access or hand over to a particular BS (1〇〇4) or several types of BSs. Or a similar operation as described herein. The UT 1002 can additionally include a memory 1014 that is operatively coupled to the processor 1〇12. The memory 1〇14 can store data to be transmitted, to be received, etc., and an instruction suitable for wireless communication with the remote device (1004). Further, the 'memory 1014 can store the above by the processor. Modules, applications, engines, etc. (1016, 1018, 1022, 1024, 1026) executed by 1〇12. In addition to the above, the processor 1〇12 and the memory 1014 can be coupled to the reselection module 1016, and the reselection module 1016 can perform base station reselection to obtain a network access point (1004) or identify and exchange. To the preferred access point (丨〇〇4). The reselection module HH6 obtains this direction from the SDL obtained from the BS 1004 and stored in the memory 1〇14. The second selection may include scanning the cells identified at the antenna and the receiver 1008 to identify the cells of the signals and comparing the cell IDs to the customized SDL. To facilitate the generation of the throttled SDL, the processor 1〇12 can provide information identifying the υτ 1〇〇2 or from the user profile stored in the memory 1014 and associated with the 135136.doc -45- 200935932 household. Information. The user profile can be utilized to establish the UT 1002 native GEO (eg, based on user address, postal code, or similar). In some aspects, the processor 1012 can query the user via the user interface (UI) of the UT 1002 (not depicted) to obtain user profiles (such as location information for establishing a home GEO) or to identify data for the UT 1002 (such as UT 1002). Phone number, serial number, MSI, IMSI or similar). In addition, the user profile 1020 and/or information obtained from the UI can indicate the ultra-micro capabilities of the UT 1002.

力。如本文描述,可將前述資料轉遞至BS 1004以產生定 製 SDL 〇 除前述之外’ UT 1002可包含用於判定所接收無線信號 之信號統計的分析模組1 〇 18。信號統計可包含信號強度及/ 或品質資訊。亦可結合由起動模組1026實施之初始起動及/ 或獲取常式(例如,啟動常式)將此等統計提供至BS 1004以 組態UT 1002以用於與BS 1002通信及/或用於將相鄰外來 超微型小區記入黑名單,其儲存於記入黑名單模組1〇24 中。可經由路由模組1022將統計資訊發送至bS 1004,該 路由模組1022可利用特定啟動頻道以在起動/獲取常式期 間與BS 1004通信。在完成起動/獲取常式時,υτ 1〇〇2可 利用定製SDL以獲取相鄰存取點(1〇〇4),且嘗試註冊於與 存取點(1004)相關聯之行動網路上。 前述系統已關於若干組件、模組及/或通信介面之間的 互動而描述。應瞭解,此等系統及組件/模組/介面可包括 在其中指定之彼等組件或子組件、所指定之組件或子址件 中之-些及/或額外組件。舉例而言,一系統可_接 I35136.doc -46- 200935932 至供應模組302之超微型小區21〇、網際網路24〇、核心網 路518及UT 1002或此等及其他組件之不同組合。子組件亦 可作為通信地麵接至其他組件而非包括於父組件内的組件 來實施。另外,應注意,一或多個組件可組合成提供集合 功能性之單一組件。舉例而言,信號分析模組5〇8可包括 • 路由模組518或路由模組518可包括信號分析模組5〇8,以 . 促進經由單一組件分析所接收信號統計及報告此等統計至 纟籍超微型小區。該等組件亦可與本文未具體描述但熟習 此項技術者已知的一或多個其他組件互動。 此外,如將瞭解,上文所揭示之系統及下文之方法之各 部分可包括基於人工智慧或知識或規則之組件、子組件、 過程、構件、方法或機構(例如,支援向量機、神經網 路專家系、统、貝氏推理網路(Bayesian beHef⑽醫k)、 模糊邏輯、資料融合引擎、分類器…)或由其組成。此等 組件及除本文中已描述之組件外之組件可自動化藉此執行 ❿ &lt;某些機制或過冑,以使該等系統及方法之部分更具適應 性及有效性與智慧性。 鑒於上文描述之例示性系統,將參看圖u至圖16之流程 • 圖來更好地瞭解可根據所揭示之標的物而實施之方法。雖 . 、、'出於解釋之簡單起見將方法展示並描述為一系列區塊, 但應理解並瞭解’所主張之標的物不受區塊之次序的限 制,因為—些區塊可以不同於本文中所描繪並描述之次序 的次序發生及/或與其他區塊同時發生。此外,並不需要 有斤說明之區塊來實施下文描述之方法。另夕卜,應進一 135136.doc -47- 200935932 步瞭解’下文中及貫穿此說明書所揭示之方法能夠儲存於 製品上以促進將肖等方法輸送並轉移至電㈣。所使用之術 語&quot;製品&quot;意欲涵蓋可自任何電腦可讀器件、結合載體之器 件或储存媒體存取之電腦程式。 圖Η描繪用於在行動通信環境中提供集_式存取管理之 實例方法11〇〇的流程圖。在1102,方法11〇〇可獲得υτ特定 資料。資料可包括適合唯一地判定UT之識別資訊。此資 才斗可包含刪、刪卜ESN或UT之類似識別符。該資料可 、、里由與UT之直接無線通信或經由與υτ耦接之網路存取點 獲得。在後種狀況下,該資料可伴隨有存取請求,其由 υτ利用以存取行動網路。 在1104,方法1100可利用υτ特定資料以判定υτ之存取 能力。在-些態樣中,可相對於包含與超微型使用或超微 型預訂計劃相關聯之資料的超微型資料庫參考該資料。該 資料庫可包含列出用於各種具超微型能力之之本籍超 Φ 微垔小區以及用於特定超微型小區之經授權UT的表格。 藉由存取超微型資料庫,可判SUT是否為具超微型能力 之UT(例如,υτ特定資訊是否包括於該資料庫中),何本 • 籍超微型小區與υ 丁相關聯及識別與每一此等本籍超微型 .小Q相關聯之本籍GEO的資訊。 作為前述之替代或除此之外,可利用υτ特定資料存取 與UT相關聯之營運商之本籍位置暫存器。在一些此等態 樣中,亦可自本籍位置暫存器獲得17丁之超微型能力以及 本籍超微型小區及此等小區之GEO。或者,υτ特定資料可 135136.doc -48- 200935932 包括於由UT提交及自UT或自與υτ相關聯之服務小區直接 或間接地獲得之註冊請求中。作為一實例,UT之使用者 可將ID資訊及/或超微型能力(包括對本籍超微型/本籍GE〇 之參考)提交至UT之UI中。可接著代替,或除存取超微型 資料庫或營運商之本籍位置暫存器之外亦接收此資訊。 在1106,方法1100可至少部分基sUT之存取能力產生用force. As described herein, the foregoing information can be forwarded to BS 1004 to produce a customized SDL. In addition to the foregoing, UT 1002 can include an analysis module 1 〇 18 for determining signal statistics for the received wireless signals. Signal statistics can include signal strength and/or quality information. These statistics may also be provided to BS 1004 in conjunction with initial startup and/or acquisition routines (e.g., startup routines) implemented by starter module 1026 to configure UT 1002 for communication with BS 1002 and/or for The adjacent alien pico cells are blacklisted and stored in the blacklist module 1〇24. The statistical information can be sent to the bS 1004 via the routing module 1022, which can utilize a particular boot channel to communicate with the BS 1004 during the start/get routine. Upon completion of the start/get routine, υτ 1〇〇2 can utilize the custom SDL to obtain neighboring access points (1〇〇4) and attempt to register on the mobile network associated with the access point (1004). . The foregoing systems have been described in terms of interactions between several components, modules, and/or communication interfaces. It should be understood that such systems and components/modules/interfaces may include some of the components or subcomponents specified therein, the specified components or sub-components, and/or additional components. For example, a system can be connected to I35136.doc -46-200935932 to the ultra-micro cell 21 of the provisioning module 302, the Internet 24, the core network 518 and the UT 1002 or different combinations of these and other components. . Sub-components can also be implemented as components that communicate with other components rather than within the parent component. Additionally, it should be noted that one or more components can be combined into a single component that provides a collection of functionality. For example, the signal analysis module 〇8 can include: the routing module 518 or the routing module 518 can include a signal analysis module 〇8 to facilitate analyzing the received signal statistics and reporting the statistics via a single component to Ruanji ultra-micro community. The components can also interact with one or more other components not specifically described herein but known to those skilled in the art. In addition, as will be appreciated, the systems disclosed above and portions of the methods below may include components, sub-components, processes, components, methods, or mechanisms based on artificial intelligence or knowledge or rules (eg, support vector machines, neural networks) The road expert system, system, Bayesian inference network (Bayesian beHef (10) medical k), fuzzy logic, data fusion engine, classifier...) or consists of. These components and components other than those already described herein can be automated to perform &lt;some mechanisms or mechanisms to make portions of such systems and methods more adaptive and effective and intelligent. In view of the exemplary systems described above, reference will be made to the flowcharts of Figures u through 16 for a better understanding of the methods that can be implemented in accordance with the disclosed subject matter. Although , 'for the sake of simplicity of explanation, the method is shown and described as a series of blocks, but it should be understood and understood that the subject matter claimed is not limited by the order of the blocks, because some blocks may be different. The order of the order depicted and described herein occurs and/or occurs concurrently with other blocks. In addition, the blocks described are not required to implement the methods described below. In addition, it is understood that the method disclosed hereinafter and throughout the specification can be stored on an article to facilitate the transfer and transfer of electricity to the electricity (4). The term &quot;article&quot; is intended to encompass a computer program accessible from any computer readable device, device in conjunction with a carrier, or storage medium. The figure depicts a flow diagram of an example method 11 for providing centralized access management in a mobile communication environment. At 1102, Method 11 can obtain υτ specific data. The data may include identification information suitable for uniquely determining the UT. This asset can contain similar identifiers for deleting or deleting ESN or UT. This information can be obtained by direct wireless communication with the UT or via a network access point coupled to υτ. In the latter case, the data may be accompanied by an access request, which is utilized by υτ to access the mobile network. At 1104, method 1100 can utilize υτ specific data to determine the accessibility of υτ. In some instances, the data may be referenced relative to a pico-database containing information associated with the pico-use or pico-subscription program. The database may include a table listing the various Super Φ micro-cells with sub-micro capabilities and the authorized UT for a particular pico cell. By accessing the ultra-miniature database, it can be judged whether the SUT is a sub-micro-capable UT (for example, whether υτ specific information is included in the database), and the Hojima ultra-micro cell is associated with the identification and identification. Each of these homes is super-micro. The information about the home of GEO associated with Xiao Q. Alternatively or in addition to this, the operator's home location register associated with the UT may be accessed using the υτ specific data. In some of these cases, the ultra-micro capability of 17 D and the ultra-micro cell of the home and the GEO of such a cell can also be obtained from the home location register. Alternatively, the υτ specific data may be included in a registration request submitted by the UT and obtained directly or indirectly from the UT or from a serving cell associated with υτ. As an example, a user of the UT can submit ID information and/or sub-miniature capabilities (including references to the Home Micro/Home GE) to the UI of the UT. This information can then be received instead of, or in addition to accessing the ultra-micro database or the operator's home location register. At 1106, method 1100 can generate at least a portion of the base sUT access capability.

於UT之定製SDL〇若!;丁不具有超微型能力’貝彳SDL可(例 如)包括接近UT之巨集小區之存取資訊,且gUT具有超微 型能力’則其包括巨集小區及超微型小區之存取資訊兩 者。除前述之外,SDL可基於UT之位置指*若干類型存取 點(例如,超微型、巨集)之相對優先權。因此,例如,若 UT當前在本籍GE〇中,則可給予超微型小區存取資訊高優 先權,且給^巨集存取資訊較低優先權。該優先權可促進 UT將存取及保持與超微型小區糕接之增加的可能性。在 -些態樣中’定製SDL可識別υτ之特定本籍超微型小區, 使得此小區可由UT識別。可給予本籍超微型小區最高優 先權。在其他態樣中,亦可識別外來超微型小區,且給予 其最低優先權,或可在定製SDL中將其記入黑名單。因 itG J U l 队王M、to心夕炼發信號。一旦 類 生定製SDL’即可將其轉遞至UT以用於至少基於存取點 型選擇性地存取各種網路存取點 圖12描繪用於獲得υτ特定資 SDL之實例方法12〇〇的流程圖。 法1200可自UT獲得υτ特定資料 料以產生用於UT之定製 在1202’如本文描述,方 。在1204,方法12〇〇可關 135136.doc -49- 200935932 於與UT相關聯之用戶資料詢問HLR。在1206,可至少部分 基於用戶資料作出關於UT是否為具超微型能力2UT的判 定。若UT不為具超微型能力之υτ,則方法1200可進行至 1208 ’在1208 ’產生建立巨集存取點之優先權的巨集SDL 且在1222將其提供至υτ。 右判定UT為具超微型能力之υτ,則方法12〇〇可進行至 1210。在1210,方法1200可視情況(如由虛線指示)關於與 UT相關之本籍超微型小區及相關資訊詢問超微型資料 庫。或者,方法1200可動態地自網路HLR或替代存取超微 型資料庫而自UT獲得超微型小區及相關資訊。在任一狀 況下,方法1200可在1212獲得關於!;丁之超微型本籍小區 及本籍GEO。另外,在丨214,方法1200可獲得UT之當前 GEO,以及此GE〇内之鄰近小區。在1216,方法12〇〇可判 定UT是否在本籍小區或本籍GE〇内。若不在則方法I]⑼ 可進行至1218,在1218,可產生在外來超微型環境中之定 製SDL。此外來SDL可給予低優先權至外來超微型小區, 或將,等小區記入黑名單中,且給予相對較高優先權至巨 集小區。另一方面,若在參考數字1216判定1丁在本籍小 區或本籍GEO内,則方法1200可進行至1220,在122〇,可 為UT產生本籍SDL。本籍狐可識別且給予高優先權至與 υτ相關聯之本籍超微型小區。在1222,方法可將定 製SDL(無論巨集、外來還是本籍超微型}發送至心 圖13描繪用於存取行動網路之實例方法的流程圖。在 1302,方法1300可提交包含請求仍之⑴之註冊請求。該 135136.doc -50- 200935932 ID可包含可用以區分UT與其他此等111的任何適合資訊。 根據一些態樣,該註冊請求可視情況包括υτ之存取能 力,諸如该UT是否經組態以存取超微型小區、本籍超微 型小區之ID資訊(例如,SID/NID/小區m)及由此小區利用 之頻道,以及UT之當前位置或GE〇及當前服務於UT2Bs 之ID。 ‘ 在13〇4,方法1300可獲得根據在參考數字1302處提交之 UTf訊而^製的SDL。因此,例如,定製SDL可包括識別 由UT佔據之當前GE〇内之本籍超微型小區、外來超微型小 區及/或相鄰巨集小區之資訊。在其他態樣中’ SDL可根據 存取點類型以及由各種存取點利用之頻道而為各種存取點 提供相對優先權。基於相對優先權,17丁可在各種接收信 號中進行選擇以識別較佳存取點。若較佳存取點未定位於 特定頻道上,則UT可交換頻道以促進定位較佳存取點之 嘗試。然而,若不能發現此存取點,則υτ可選擇非較佳 參小區,或不給予小區特定優選(或例如,中等優選)^然 而,UT可週期性地掃描所接收信號及可用頻道以繼續嘗 試獲得較佳小區。此週期性掃描可繼續直至發現較佳小 - 區,或直至將新的SDL提供至UT(例如,若υτ移動至新的 . geo,若網路拓撲改變’ 11丁斷電及通電或其類似者),其 不包括較佳小區。 圖14說明用於在行動通信環境中提供分散式存取管理之 實例方法的流程圖。在1402,如本文描述,方法14〇〇可獲 得具有υτ特定資料之註冊請求。在14〇4,方法14〇〇可獲 135136.doc -51 - 200935932 得請求UT之超微型能力(例如,自此υτ,自超微型資料 庫,自營運商之HLR等)。在1406,方法1400可獲得UT位 於其中之特定GEO内之小區或接近耦接至該UT之服務小區 之小區的鄰近小區資料《鄰近小區資料可自網路組件或自 UT獲得,其可分析由鄰近小區傳輸之信號且提供此等信 號之統計作為接近UT之網路環境之分析。在1408,方法 1400可產生具有UT能力及鄰近小區資料之SDL。如本文描 述,可利用UT能力定製SDL以致能UT之選擇性存取點管 理。另外,鄰近小區資料可由UT利用以搜尋SDL中指示之 較佳小區(若存在)。在至少一態樣中,若服務小區為較佳 存取點(例如,本籍超微型小區),則可利用鄰近小區資料 以將服務小區附近的一或多個非較佳存取點記入黑名單。 藉由利用鄰近小區之資料’可維護一相對較小的小區黑名 單,從而分別降低分析及儲存定製SDL之處理及記憶體需 求。 圖15描緣用於利用起動常式來耦接至υτ且基於υτ之存 取能力產生UT之定製SDL之實例方法的流程圖。在15〇2, 方法1500可建立與核心行動網路之核心網路鏈路。在 1504,方法1500可獲得用於相鄰1;丁之初始獲取之啟動參 數。在1506,方法1500可獲得用於與遠端器件之蜂巢式通 信的蜂巢式參數。在1508 ’方法15G()可進人—啟動供應模 式。在1510,方法1500可建立與相鄰υτ之鏈路。該鏈路 可視情況利用極低傳輸功率,從而致能僅與附近υτ之通 信。在1512,方法1500可接收來自仍之仍資料及周圍網 135136.doc •52. 200935932 路統計◊在1514,方法1500可基於該料及網路統計 產生UT之定製SDL。在1516,方法15〇〇可*υτ添加至 CSG,從而將UT建立為經授權^^。在1518,方法15〇〇可 將定製SDL提供至UT。在1520,方法15〇〇可自網路獲得經 更新之網路拓撲參數。經更新之網路拓撲參數可包括在周 圍GEO内之額外及/或經修改之υτ資料。在丨522 ,方法 1500可基於經更新之網路拓撲參數修改提供至υτ之定製 SDL。在1524 ’方法1500可將經更新之SDL提供至1;丁,以 促進在經更新之網路環境中之存取點選擇。 圖16說明用於促進基於UT特定資料及11丁特定存取能力 之定製SDL之產生的實例方法的流程圖。在16〇2,方法 1600可自記憶體或自使用者輸入獲得υΤ資料。在16〇4, 方法1600可獲得啟動SDL。可藉由利用與網路相關聯之GA BS(例如’巨集BS)而(例如)自行動網路獲得該啟動sdl。 在1606 ’方法1600可進入在由啟動SDL提供之啟動頻道上 之啟動起動及/或獲取模式。在1608,方法1600可麵接至 啟動頻道上之啟動小區(例如’由啟動NID識別)。在 1610 ’方法1600可將UT資料提供至啟動小區。在1612, 方法1600可分析來自周圍網路之所接收無線信號,從而視 情況排除自啟動小區獲得之信號。在1 614,方法1600可自 所接收之無線信號擷取信號統計,諸如信號強度、信號品 質及其類似者。在1616 ’方法1600可將所擷取之信號統計 提供至啟動小區。在161 8,方法1600可基於UT資料及所 擷取之信號統計獲得定製SDL。在1620,方法1600可利用 135136.doc •53- 200935932 定製SDL搜尋及獲取較佳網路小區。在1622,方法1600可 在定製SDL中指定之超微型頻道上向較佳小區註冊。在 1624,方法1600可基於網路拓撲資訊之改變獲得經更新之 SDL〇 圖17及圖1 8分別描繪如本文描述促進及利用對行動網路 之存取點之集中式存取點管理的實例系統1700、1800的方 塊圖。舉例而言,系統1700、1 800可至少部分地常駐於無 線通信網路内及/或諸如節點、基地台、存取點、使用者 終端機、與行動介面卡耦接之個人電腦或其類似者之傳輸 器内。應瞭解’將系統1700、1800表示為包括功能區塊, 該等功能區塊可為表示由處理器、軟體或其組合(例如, 韌體)實施之功能的功能區塊。 系統1700可包含用於獲得關於UT之資料的第一構件 1702。該資料可包含區分UT與其他此等UT以及識別提供 對ϋτ之行動服務之營運商的資訊。第二構件17〇4可利用 該資料獲得UT之存取能力。若將UT識別為具超微型能力 之UT,則該等能力可自超微型資料庫獲得。另外或其 他’該等能力可自在營運商之核心網路處維護之營運商之 HLR獲得。在本發明之其他態樣中,該等能力可使用關於 UT之資料獲得,或直接或間接地自此資料導出(例如,其 中該資料或此資料之雜湊產生該等能力卜系統17〇〇可進 一步包含用於產生定製SDL之第三構件17〇6。定製sdl可 列出可由UT至少部分基於UT能力而利用之行動網路存取 點。在-些態樣中,可根據υτ位於其中之當前GE0而過渡 135136.doc •54- 200935932 :路存取點。此外,可給予存取點衫次序之優先權或優 :’從而促進對一或多個此等存取點之選擇性存取及/或 獲取。在至少—此態樣中,該次序/優先權可係基於υτ之 能力》因此’例如’在UT為具超微型能力之器件之情況 下’可給予優先權至超微型存取點或與υτ相關聯之本籍 存取點。在UT不具超微型能力之情況下,可給予優先權 至另一類存取點,諸如GA巨集存取點。Customized SDL in UT! Ding does not have ultra-micro capabilities 'Beiwei SDL can (for example) include access information of the macro cell close to UT, and gUT has ultra-micro capability', which includes access information of macro cell and pico cell . In addition to the foregoing, the SDL can refer to the relative priority of several types of access points (e.g., pico, macro) based on the location of the UT. Therefore, for example, if the UT is currently in the home GE, the hyper-cell can be given priority to access the information, and the macro access information is given lower priority. This priority facilitates the possibility that the UT will access and maintain the connection to the picocell. In some of the aspects, the custom SDL can identify the particular home micro-cell of υτ such that the cell can be identified by the UT. The highest priority can be given to the home micro-cell. In other aspects, the alien picocell may also be identified and given the lowest priority, or it may be blacklisted in the custom SDL. Because itG J U l team king M, to heart eve refining signal. Once the classifies the SDL', it can be forwarded to the UT for selective access to various network access points based on at least the access point type. FIG. 12 depicts an example method for obtaining a 特定τ specific SDL. Awkward flow chart. Method 1200 can obtain υτ specific material from UT to generate a customization for UT at 1202' as described herein. At 1204, Method 12 〇〇 135136.doc -49- 200935932 asks the HLR for the user profile associated with the UT. At 1206, a determination can be made as to whether the UT is a sub-capacity 2UT based at least in part on the user profile. If the UT is not υτ with ultra-micro capabilities, then method 1200 can proceed to 1208 ' at 1208' to generate a macro SDL that establishes the priority of the macro access point and provide it to υτ at 1222. If the right UT is υ τ with ultra-micro capability, then method 12 进行 can proceed to 1210. At 1210, method 1200 may, depending on the situation (as indicated by the dashed lines), query the ultra-micro database with respect to the UT-related home micro-cell and related information. Alternatively, method 1200 can dynamically obtain the picocell and associated information from the UT dynamically from the network HLR or instead of accessing the ultra-micro database. In either case, method 1200 can be obtained at 1212! ; Ding Zhichao micro-book community and the origin of GEO. Additionally, at 214, method 1200 can obtain the current GEO of the UT, as well as neighboring cells within the GE. At 1216, method 12 can determine if the UT is in the home cell or in the home GE. If not, method I](9) can proceed to 1218, at 1218, a custom SDL can be generated in an exotic ultra-micro environment. In addition, the SDL can give low priority to the alien picocell, or classify the cells into the blacklist and give relatively high priority to the macrocell. On the other hand, if it is determined at reference numeral 1216 that it is within the home zone or the home GEO, the method 1200 can proceed to 1220, at 122 〇, the home SDL can be generated for the UT. The native fox can identify and give high priority to the home micro-cell associated with υτ. At 1222, the method can send a custom SDL (whether macro, foreign or native pico) to the heart diagram of Figure 13 depicting an example method for accessing a mobile network. At 1302, method 1300 can submit a request containing still The registration request of (1). The 135136.doc -50-200935932 ID may include any suitable information that may be used to distinguish the UT from other such 111. According to some aspects, the registration request may optionally include access to υτ, such as Whether the UT is configured to access the ID information (eg, SID/NID/cell m) of the picocell, the home microcell, and the channel utilized by the cell, and the current location of the UT or GE and currently serve the UT2Bs ID. At 13〇4, method 1300 obtains an SDL based on the UTf message submitted at reference numeral 1302. Thus, for example, customizing the SDL may include identifying the current home of the current GE within the UT. Information about microcells, alien picocells, and/or neighboring macrocells. In other aspects, 'SDL can provide relative priority for various access points based on access point type and channels utilized by various access points. . With respect to relative priority, 17 can select among various received signals to identify preferred access points. If the preferred access point is not located on a particular channel, the UT can exchange channels to facilitate an attempt to locate a better access point. However, if the access point cannot be found, then τ can select a non-preferred reference cell, or do not give a cell-specific preference (or, for example, a medium preference). However, the UT can periodically scan the received signal and the available channels to Continue to try to obtain a better cell. This periodic scan can continue until a better small-area is found, or until a new SDL is provided to the UT (eg, if υτ moves to a new .ge, if the network topology changes '11 Power outage and power up or the like, which does not include a preferred cell. Figure 14 illustrates a flow diagram of an example method for providing decentralized access management in a mobile communication environment. At 1402, as described herein, method 14注册 You can obtain a registration request with υτ specific data. At 14〇4, Method 14 〇〇 135136.doc -51 - 200935932 may request UT's ultra-miniature capability (for example, since υτ, from the ultra-miniature database, The HLR of the operator, etc.) At 1406, the method 1400 may obtain the neighboring cell data of the cell in the specific GEO in which the UT is located or the cell that is close to the serving cell of the UT. The neighbor cell data may be from the network component or the self. The UT obtains, which can analyze the signals transmitted by neighboring cells and provide statistics of such signals as an analysis of the network environment close to the UT. At 1408, method 1400 can generate an SDL with UT capabilities and neighbor cell data. As described herein, The SDL can be customized with UT capabilities to enable selective access point management of the UT. In addition, neighbor cell data may be utilized by the UT to search for a preferred cell (if present) indicated in the SDL. In at least one aspect, if the serving cell is a preferred access point (eg, a home micro-cell), neighbor cell data may be utilized to blacklist one or more non-preferred access points in the vicinity of the serving cell. . By using the data of neighboring cells, a relatively small cell blacklist can be maintained, thereby reducing the processing and memory requirements for analyzing and storing the customized SDL, respectively. Figure 15 depicts a flow diagram of an example method for utilizing a startup routine to couple to υτ and generate a custom SDL for the UT based on the accessibility of υτ. At 15〇2, method 1500 can establish a core network link with the core mobile network. At 1504, method 1500 obtains an activation parameter for the initial acquisition of the adjacent 1; At 1506, method 1500 obtains a honeycomb parameter for cellular communication with a remote device. At 1508 'Method 15G() can be entered - to initiate the supply mode. At 1510, method 1500 can establish a link with an adjacent υτ. The link can optionally utilize very low transmission power, enabling communication with only nearby υτ. At 1512, method 1500 can receive statistics from the still data and surrounding network 135136.doc • 52. 200935932 Road Statistics at 1514, method 1500 can generate a custom SDL for the UT based on the material and network statistics. At 1516, method 15 〇〇 * υ τ is added to the CSG to establish the UT as authorized ^^. At 1518, Method 15 can provide a custom SDL to the UT. At 1520, method 15 can obtain updated network topology parameters from the network. The updated network topology parameters may include additional and/or modified υτ data within the surrounding GEO. At 522, method 1500 can modify the customized SDL provided to υτ based on the updated network topology parameters. The 1524&apos; method 1500 can provide the updated SDL to 1 to facilitate access point selection in the updated network environment. 16 illustrates a flow diagram of an example method for facilitating generation of a customized SDL based on UT specific data and 11 specific access capabilities. At 16 〇 2, method 1600 can obtain υΤ data from memory or from user input. At 16〇4, method 1600 can obtain a boot SDL. The boot sdl can be obtained, for example, from a mobile network by utilizing a GA BS associated with the network (e.g., a &apos;bigset BS). At 1606' method 1600, an activation start and/or acquisition mode on the activation channel provided by the initiating SDL is entered. At 1608, method 1600 can be interfaced to the initiating cell on the activation channel (e.g., 'identified by the initiating NID). The UT data can be provided to the initiating cell at 1610' method 1600. At 1612, method 1600 can analyze the received wireless signals from the surrounding network to exclude signals obtained from the initiating cell as appropriate. At 1 614, method 1600 can extract signal statistics from the received wireless signals, such as signal strength, signal quality, and the like. The 1616' method 1600 can provide the captured signal statistics to the initiating cell. At 1618, method 1600 can obtain a customized SDL based on the UT data and the signal statistics retrieved. At 1620, method 1600 can utilize 135136.doc • 53- 200935932 to customize SDL search and obtain a preferred network cell. At 1622, method 1600 can register with the preferred cell on the pico channel specified in the custom SDL. At 1624, method 1600 can obtain an updated SDL based on changes in network topology information. FIG. 17 and FIG. 18 respectively depict an example of centralized access point management for facilitating and utilizing access points to a mobile network as described herein. A block diagram of systems 1700, 1800. For example, systems 1700, 1 800 can reside at least partially within a wireless communication network and/or such as a node, a base station, an access point, a user terminal, a personal computer coupled to a mobile interface card, or the like In the transmitter. It will be appreciated that the system 1700, 1800 is represented as including functional blocks that may be functional blocks representing functions implemented by a processor, software, or combination thereof (e.g., firmware). System 1700 can include a first component 1702 for obtaining information about the UT. This information may include information that distinguishes the UT from other such UTs and identifies operators that provide action services for ϋτ. The second component 17〇4 can use this information to obtain the access capability of the UT. If the UT is identified as a UT with ultra-micro capabilities, then these capabilities are available from the ultra-micro library. In addition, or other capabilities may be obtained from the HLR of the operator maintained at the operator's core network. In other aspects of the invention, such capabilities may be obtained using data relating to the UT, or derived directly or indirectly from the material (eg, wherein the data or the hash of the material produces such capabilities) Further comprising a third component 17〇6 for generating a customized SDL. The custom sdl may list mobile network access points that may be utilized by the UT based at least in part on UT capabilities. In some aspects, may be located according to υτ Among them, the current GE0 transitions 135136.doc • 54- 200935932: way access points. In addition, the access order order priority or superior can be given: 'to facilitate the selectivity of one or more of these access points Access and/or acquisition. In at least - in this aspect, the order/priority may be based on the ability of υτ" so that 'for example, in the case of a device with ultra-micro capabilities, the UT may give priority to super A micro access point or a home access point associated with υτ. Given the UM's lack of femto capabilities, priority can be given to another type of access point, such as a GA macro access point.

系統刪可包含詩將註冊請求提交至行動網路之存取 點的第-構件18G2,其中該註冊請求包含請求器件之id。 此外,系統1800可包含用於至少部分基於請求器件之⑴獲 得定製SDL的第二構件18〇4。該飢可(例如)識別及給予 高優先權至與請求器件相關聯之特定存取點。除前述之 外,系統1800可包含用於利用定製SDL以搜尋及/或獲取 SDL中識別之存取點的第三構件18〇6。此構件18〇6可利用 SDL中指定之存取點優選來進行搜尋。因此,可選擇具有 高於其他小區之優選權的小區。在較佳小區不能由構件 1806識別之情況下,構件1806可選擇次佳或非較佳小區用 於網路存取《然而,在此狀況下,該構件可週期性地再起 始搜尋以識別較佳存取點。若識別到較佳存取點,則系統 1800可連接至此存取點且自其請求行動服務。另外,在識 別到較佳存取點之情況下’構件1806可減小臨限值(低於 該臨限值,系統1 800將搜尋其他小區代替較佳存取點), 以增加系統1 800保持與較佳存取點耦接的可能性。 圖19及圖20分別描繪如本文描述促進及利用對行動網路 135l36.doc • 55· 200935932 之存取點之集中式存取點管理的實例系統19〇〇、2〇〇〇的方 塊圖。舉&lt;列而言,系、统1900、2000可至少部分地常駐於無 線通信網路内及/或諸如節點、基地台、存取點、使用者 終端機、與行動介面卡耦接之個人電腦或其類似者之傳輸 器内。應瞭解,將系統1900、2〇〇〇表示為包括功能區塊, 該等功能區塊可為表示由處理器、軟體或其組合(例如, . 韌體)實施之功能的功能區塊。 系統1900包含用於基於啟動參數起始啟動模式的第一構 件1902。此等參數可指定用於與啟動模式相關聯之無線通 信的頻道、用於識別系統1900的啟動ID ’以及在啟動模式 期間無線通信之傳輸功率。另外,系統19〇〇可包括用於經 由無線資料交換獲得UT存取能力的第二構件19〇4。此 外,系統1900可包含用於基於存取能力產生定製SDL的第 三構件1906。定製SDL可指示一或多個類型存取點基於υτ 能力之優選。在一些態樣中,可將與關聯之本籍存 〇 取點識別及列出為SDL中之最高優先權存取點,以促進搜 尋及獲取本籍存取點之增加的可能性。根據特定態樣, SDL亦可基於經判定在較佳存取點之附近的存取點之相對 . 信號強度而將此等附近存取點記入黑名單。因此,SDL可 促進UT將回避較佳存取點而偏選其他此等存取點的減小 之可能性。 系統2000包含用於獲得啟動sdL的第一構件2〇〇2。可(例 如)經由自行動網路之組件之無線供應獲得啟動SDL。另 外,系統2000可包含用於經由啟動SDL中指定之啟動頻道 135136.doc -56- 200935932 而耦接至小區的第二構件2004。另外,可自啟動SDL棟取 小區之系統、節點及/或小區ID以促進識別此小區。此 外,系統2000可包含用於獲得及利用定製SDL來選擇行動 網路之存取點的第三構件2006。定製SDL可指示由存取點 利用之典型無線電頻道以促進搜尋及存取。此外,定製 • SDL可藉由小區ID或類似識別符識別此等小區,因此,系The system deletion may include a component-component 18G2 that submits the registration request to the access point of the mobile network, wherein the registration request includes the id of the requesting device. Moreover, system 1800 can include a second component 18〇4 for obtaining a customized SDL based at least in part on (1) of the requesting device. The hunger can, for example, identify and give a high priority to a particular access point associated with the requesting device. In addition to the foregoing, system 1800 can include third component 18〇6 for utilizing a customized SDL to search for and/or obtain an access point identified in the SDL. This component 18〇6 can be searched using the access point preferences specified in the SDL. Therefore, cells with higher priority than other cells can be selected. In the event that the preferred cell is not recognized by component 1806, component 1806 may select a sub-optimal or non-preferred cell for network access. "However, in this case, the component may periodically initiate a search to identify the comparison. Good access point. If a preferred access point is identified, system 1800 can connect to the access point and request an action service from it. In addition, component 1806 can reduce the threshold (below the threshold, system 1 800 will search for other cells instead of preferred access points) to identify system 1 800 in the case where a preferred access point is identified. The possibility of coupling with a preferred access point is maintained. 19 and 20 depict block diagrams of example systems 19A, 2B, respectively, for facilitating and utilizing centralized access point management for access points to the mobile network 135l36.doc • 55·200935932, as described herein. In the case of &lt;columns, the systems 1900, 2000 may reside at least partially within the wireless communication network and/or individuals such as nodes, base stations, access points, user terminals, and mobile interface cards. Inside the transmitter of a computer or the like. It will be appreciated that the systems 1900, 2A are represented as including functional blocks, which may be functional blocks representing functions implemented by a processor, software, or combination thereof (e.g., firmware). System 1900 includes a first component 1902 for initiating a startup mode based on a startup parameter. These parameters may specify the channel for wireless communication associated with the startup mode, the activation ID for identifying the system 1900, and the transmission power for wireless communication during the startup mode. Additionally, system 19A can include a second component 19〇4 for obtaining UT access capabilities via wireless data exchange. In addition, system 1900 can include a third component 1906 for generating a customized SDL based on access capabilities. The custom SDL may indicate that one or more types of access points are based on the preference of the ττ capability. In some aspects, the associated home directory may be identified and listed as the highest priority access point in the SDL to facilitate the search and acquisition of the increased likelihood of the home access point. Depending on the particular aspect, the SDL may also blacklist such nearby access points based on the relative strength of the access points determined to be near the preferred access point. Thus, the SDL can facilitate the UT to avoid the preferred access point and bias the likelihood of other such access points being reduced. System 2000 includes a first component 2〇〇2 for obtaining a startup sdL. The launch SDL can be obtained, for example, via a wireless provisioning of components from the mobile network. In addition, system 2000 can include a second component 2004 for coupling to a cell via a boot channel 135136.doc - 56 - 200935932 specified in the launch SDL. In addition, the system, node, and/or cell ID of the cell can be self-initiated to facilitate identification of the cell. In addition, system 2000 can include a third component 2006 for obtaining and utilizing a customized SDL to select an access point for the mobile network. The custom SDL can indicate the typical radio channel utilized by the access point to facilitate searching and access. In addition, custom • SDL can identify these cells by cell ID or similar identifier, therefore,

• 統200〇可結束與小區之通信且起始對定製SDL中指定之小 區的搜尋’且嘗試自此指定小區獲得行動服務。定製SdL ® 可視情況基於系統2000常駐於其中之一或多個周圍ge〇。 隨著系統2000自一 GEO移動至另一 GEO,可參考SDL來判 定應利用哪些小區來存取網路。在不能識別指定小區之情 況下’可替代地利用通用小區,諸如巨集網路小區。在此 狀況下,系統2000可在經由通用小區耦接至網路之同時繼 續搜尋由SDL指定之小區。 上文所描述包括所主張標的物之態樣的實例。當然,不 φ 可能為描述所主張標的物之目的而描述組件或方法的每一 可構想組合,但一般熟習此項技術者可認識到,所揭示標 的物之許多其他組合及排列為可能的。因此,所揭示標的 • ㈣欲囊括屬⑨隨附中請專利㈣之精神及範冑内之所有 ' 此等替代、修改及變化。此外,就術語&quot;包括&quot;或,,具有”用 於實施方式或申請專利範圍中之程度而言,此等術語意欲 、類似於術§吾”包含&quot;在作為過渡詞用於申請專利範圍中時 進行解釋之方式而為包括性的。 【圖式簡單說明】 135136.doc -57· 200935932 圖1說明根據本發明之態樣之實例無線通信環境的方塊 圖。 圖2說明根據其他態樣之包含超微型小區(BS)之樣本無 線網路的方塊圖。 圖3描繪用於向使用者終端機(υτ)供應用於超微型小區 獲取之系統判定清單(SDL)的樣本系統的方塊圖。 圖4說明促進基於UT2能力之選擇性83獲取之實例系統 的方塊圖。 圖5描繪對UT利用分散式存取點管理之樣本系統的方塊 圖。 圖6說明根據本文揭示之一些態樣利用啟動組態來供應 UT之實例系統的方塊圖。 圖7描繪包含各種超微型小區網路散布於其中之實例環 境及巨集存取環境的方塊圖。 圖8描繪根據一些態樣促進GE〇特定存取點管理之實例 疋製SDL的方塊圖。 圖9說明根據一些態樣包含與一或多個υτ通信地耦接之 超微型BS之實例系統的方塊圖。 圖10描繪包含與一或多個BS通信地耦接之具超微型能力 之UT之樣本系統的方塊圖。 圖11說明用於在行動環境中提供集十式存取點管理之實 例方法的流程圖* 圖12說明根據一些態樣用於獲得υτ特定資訊以產生定 製SDL之實例方法的流程圖。 I35136.doc -58- 200935932 圖13描繪用於利用定製SDL存取一行動網路之樣本方法 的流程圖。 圖14描繪用於在行動環境中提供分散式存取點管理之實 例方法的流程圖。 圖15說明用於與超微型小區介接以產生對於特定〇丁定 製之SDL之實例方法的流程圖。 圖16說明用於利用定製SDL選擇對行動網路之較佳存取 點的樣本方法之流程圖。 ❹• The system 200 can end the communication with the cell and initiate a search for the cell specified in the customized SDL' and attempt to obtain the mobile service from the designated cell. Custom SdL ® viewing conditions are based on system 2000 resident in one or more of the surrounding ge〇. As system 2000 moves from one GEO to another GEO, the SDL can be referenced to determine which cells should be utilized to access the network. A generic cell, such as a macro network cell, may alternatively be utilized if the designated cell is not identifiable. In this case, system 2000 can continue to search for cells designated by the SDL while being coupled to the network via the universal cell. The examples described above include aspects of the claimed subject matter. Of course, not every φ may describe every conceivable combination of components or methods for the purpose of describing the claimed subject matter, but those skilled in the art will recognize that many other combinations and permutations of the disclosed subject matter are possible. Therefore, the subject matter disclosed is to include all of the substitutions, modifications and changes in the spirit and scope of the patents (4). In addition, the terms &quot;include&quot; or, to the extent that they are used in the scope of the embodiments or claims, are intended to be similar to the terms used in the application. The manner in which the scope is explained is inclusive. BRIEF DESCRIPTION OF THE DRAWINGS Figure 1 illustrates a block diagram of an example wireless communication environment in accordance with aspects of the present invention. Figure 2 illustrates a block diagram of a sample wireless network including a picocell (BS) according to other aspects. 3 depicts a block diagram of a sample system for provisioning a system decision list (SDL) for sub-micro cell acquisition to a user terminal (υτ). Figure 4 illustrates a block diagram of an example system that facilitates UT2-based selective 83 acquisition. Figure 5 depicts a block diagram of a sample system that utilizes decentralized access point management for the UT. 6 illustrates a block diagram of an example system that utilizes a boot configuration to provision a UT in accordance with some aspects disclosed herein. Figure 7 depicts a block diagram of an example environment and macro access environment in which various hyper-cell network networks are interspersed. Figure 8 depicts a block diagram of an example SKI that facilitates GE&apos;s specific access point management in accordance with some aspects. Figure 9 illustrates a block diagram of an example system including an ultra-micro BS communicatively coupled to one or more υτ, in accordance with some aspects. 10 depicts a block diagram of a sample system including a subminiature capable UT communicatively coupled to one or more BSs. Figure 11 illustrates a flow diagram of an example method for providing a set of access point management in a mobile environment. Figure 12 illustrates a flow diagram of an example method for obtaining υτ specific information to produce a customized SDL, in accordance with some aspects. I35136.doc -58- 200935932 Figure 13 depicts a flow diagram of a sample method for accessing a mobile network using a custom SDL. Figure 14 depicts a flow diagram of an example method for providing decentralized access point management in a mobile environment. Figure 15 illustrates a flow diagram of an example method for interfacing with a femtocell to generate an SDL for a particular caddy. Figure 16 illustrates a flow diagram of a sample method for selecting a preferred access point to a mobile network using a custom SDL. ❹

圖Π描繪為行動網路連接提供集中式存取點管理之實例 系統的方塊圖。 圖18說明利用定製sdl以存取行動網路BS的實例系統的 方塊圖》 圖19說明為行動網路連接提供分散式存取點管理的實例 系統之方塊圖。 圖20描繪促進對行動網路之分散式存取點管理的實例系 統之方塊圖。 【主要元件符號說明】 100 無線通信系統 102a 巨集小區 102b 巨集小區 102c 巨集小區 102d 巨集小區 102e 巨集小區 102f 巨集小區 135136.doc -59- 200935932The figure depicts a block diagram of an example system that provides centralized access point management for mobile network connections. Figure 18 illustrates a block diagram of an example system for utilizing a custom sdl to access a mobile network BS. Figure 19 illustrates a block diagram of an example system that provides decentralized access point management for a mobile network connection. Figure 20 depicts a block diagram of an example system that facilitates decentralized access point management of a mobile network. [Major component symbol description] 100 Wireless communication system 102a Macro cell 102b Macro cell 102c Macro cell 102d Macro cell 102e Macro cell 102f Macro cell 135136.doc -59- 200935932

102g 巨集小區 104a 存取點(AP) 104b 存取點(AP) 104c 存取點(AP) 104d 存取點(AP) 104e 存取點(AP) 104f 存取點(AP) l〇4g 存取點(AP) 106a 使用者終端機(UT) 106b 使用者終端機(UT) 106c 使用者終端機(UT) 106d 使用者終端機(UT) 106e 使用者終端機(UT) 106f 使用者終端機(UT) l〇6g 使用者終端機(UT) 106h 使用者終端機(UT) 106i 使用者終端機(UT) 106j 使用者終端機(UT) 106k 使用者終端機(UT) 200 通信系統 210 超微型基地台(BS) 220 UT 230 使用者住宅、商業區、室内/室外設施 240 網際網路 135136.doc -60- 200935932 250 行動營運商核心網路 300 系統 302 供應模組 304 通信處理器 306 UE-超微型資料剖析器 - 308 系統判定清單(SDL)模組 - 400 系統 402 供應模組 ❹ 404A UT 404B UT 406A 巨集存取點 406B 超微型存取點/超微型小區 408 通信處理器 412 UE-小區資料剖析器 414 網路超微型資料庫 參 416 用戶概況 418 資料介面 420 行動核心網路 • 422 SDL模組 500 系統 502 超微型小區 504 超微型UT 506 介面應用 508 信號分析模組 135136.doc -61 - 200935932 510 報告模組 512 SDL供應模組 518 巨集核心網路/行動核心網路/導引模組 520 無線供應函式(OTAF) 522 巨集BS/巨集及超微型BS/附近小區 - 600 系統 - 602 供應模組 604 超微型UT 606 啟動組態模組 608 超微型SDL組態模組 610 資料處理器 700 經整合超微型-巨集行動環境 702 巨集BS/巨集網路/服務BS 704 UT 706A BS/本籍超微型小區 ❹ 706B BS/本籍超微型小區 708A 地理區域(GEO)/本籍GEO 708B GEO - 708C GEO • 708D GEO/本籍 GEO 802 存取點 804 UT 806 定製SDL 900 糸統 135136.doc -62- 200935932 902 BS 904 UT 906 接收天線 908 傳輸天線 910 接收器 ' 912 解調變器 914 處理器 916 記憶體 © 918 供應模組 920 發信號介面 922 資料介面 924 封閉用戶群(CSG) 926 啟動模組 928 調變器 930 傳輸器 1000 參 系統 1002 UT 1004 BS/基地台/遠端器件 1006 天線 1008 接收器 1010 解調變器 1012 處理器 1014 記憶體 1016 再選擇模組 135136.doc -63- 200935932 1018 1020 1022 1024 1026 1028 1030 1700 ® 1702 1704 1706 1800 1802 1804 1806 1900 1902 1904 1906 2000 分析模組 指令/用戶概況 路由模組 記入黑名單模組 起動模組 調變器 傳輸器 系統 用於獲得關於UT之資料的第一構件 用於獲得UT之存取能力之第二構件 用於產生定製SDL之第三構件 系統 用於將註冊請求提交至行動網路之存取點的 第一構件 用於至少部分基於請求器件之ID獲得定製 SDL的第二構件 用於利用定製SDL以搜尋及/或獲取SDL中識 別之存取點的第三構件 系統 用於基於啟動參數起始啟動模式的第一構件 用於經由無線資料交換獲得UT存取能力的第 二構件 用於基於存取能力產生定製SDL的第三構件 系統 135136.doc -64 - 200935932 2002 2004 2006 ⑩ 用於獲得啟動SDL的第一構件 用於經由啟動SDL中指定之啟動頻道而辆接 至小區的第二構件 用於獲得及利用定製SDL來選擇行動網路之 存取點的第三構件 135136.doc -65-102g macro cell 104a access point (AP) 104b access point (AP) 104c access point (AP) 104d access point (AP) 104e access point (AP) 104f access point (AP) l〇4g Access point (AP) 106a User terminal (UT) 106b User terminal (UT) 106c User terminal (UT) 106d User terminal (UT) 106e User terminal (UT) 106f User terminal (UT) l〇6g User Terminal (UT) 106h User Terminal (UT) 106i User Terminal (UT) 106j User Terminal (UT) 106k User Terminal (UT) 200 Communication System 210 Micro Base Station (BS) 220 UT 230 User Home, Business District, Indoor/Outdoor Facilities 240 Internet 135136.doc -60- 200935932 250 Mobile Operator Core Network 300 System 302 Supply Module 304 Communication Processor 306 UE - Ultra Micro Data Profiler - 308 System Decision List (SDL) Module - 400 System 402 Supply Module 404 404A UT 404B UT 406A Macro Access Point 406B Ultra Micro Access Point / Ultra Micro Cell 408 Communication Processor 412 UE - Community information 414 Network Micro-Micro Library 416 User Profile 418 Data Interface 420 Mobile Core Network • 422 SDL Module 500 System 502 Ultra-Micro Cell 504 Ultra-Micro UT 506 Interface Application 508 Signal Analysis Module 135136.doc -61 - 200935932 510 Report Module 512 SDL Supply Module 518 Macro Core Network/Action Core Network/Guide Module 520 Wireless Supply Function (OTAF) 522 Macro BS/Macro and Micro-PS/ Nearby Cell - 600 System - 602 Supply Module 604 Ultra Micro UT 606 Startup Configuration Module 608 Ultra Micro SDL Configuration Module 610 Data Processor 700 Integrated Microminiature - Macro Action Environment 702 Macro BS / Macro Network / Service BS 704 UT 706A BS/native micro-cell ❹ 706B BS/native micro-cell 708A Geographical area (GEO) / native GEO 708B GEO - 708C GEO • 708D GEO/local GEO 802 access point 804 UT 806 Custom SDL 900 135136.doc -62- 200935932 902 BS 904 UT 906 Receive Antenna 908 Transmit Antenna 910 Receiver ' 912 Demodulation Transformer 914 Processor 916 Memory © 918 Supply Module 920 Signaling Interface 922 Data Interface 924 Closed User Group (CSG) 926 Startup Module 928 Modulator 930 Transmitter 1000 Reference System 1002 UT 1004 BS/Base Station/Remote Device 1006 Antenna 1008 Receiver 1010 Solution Modulator 1012 Processor 1014 Memory 1016 Reselection Module 135136.doc -63- 200935932 1018 1020 1022 1024 1026 1028 1030 1700 ® 1702 1704 1706 1800 1802 1804 1806 1900 1902 1904 1906 2000 Analysis Module Command/User Profile Routing Module entry blacklist module startup module modulator transmitter system is used to obtain the first component of the UT data for obtaining the access capability of the UT. The second component is used to generate the third component system of the customized SDL. A first means for submitting the registration request to an access point of the mobile network for obtaining a second component of the customized SDL based at least in part on the ID of the requesting device for utilizing the customized SDL to search for and/or obtain identification in the SDL a third component system of the access point for the first component based on the startup parameter initiation startup mode for obtaining UT storage via wireless data exchange A second component of capability for generating a custom component SDL based on access capabilities 135136.doc -64 - 200935932 2002 2004 2006 10 The first component for obtaining the boot SDL is used to initiate the channel via the boot SDL And the second component connected to the cell is used to obtain and utilize the customized SDL to select the third component of the mobile network access point 135136.doc -65-

Claims (1)

200935932 十、申請專利範圍: 1. 一種促進對一行動網路之遠端存取的方法,其包含: 獲得一使用者終端機(υτ)特定資訊; 利用該UT特定資訊判定該UT之存取能力;及 基於該UT之該等存取能力,產生一用於在全異類型之 • 存取點之間進行選擇的定製系統判定清單(SDL)。 2.如請求項丨之方法,進一步包含在該定製sdl内包括用於 該UT之一本籍超微型小區的識別資料。 β 3·如請求们之方法’進—步包含至少部分基於存取點類 型指定個別存取點之相對優先權。 4·如請求項1之方法,進一步包含: 界定或獲得該UT之一本籍超微型小區位於其中之一本 籍地理區域(GEO);及 在該疋製SDL中提供當該UT處於該本籍GE〇内及在該 本籍GE0外部時建立不同存取點優先權的多個優先權等 級。 5. 如凊求項1之方法,進一步包含在該定製sdl内: 當該υτ位於一包含該本籍超微型小區之ge〇内時,將 ^籍超微型小區之-小區1£)或頻道建立為較佳的;或 當該UT不在該包含該本籍超微型小區之GE〇内時,將 巨集小區之一小區ID或頻道建立為較佳的。 6. 如請求们之彳法,獲得該υτ特定資訊進一纟包含接收 該UT之-ID,及利用該出自以下各者中之至少一者操取 吕亥資訊: 135136.doc 200935932 網路營運商之資料庫;或 一集中式核心網路資料庫。 i托項6之方法’進一步包含根據經授權以使用 ==型小區之使用者或根據與該UT相關聯之本籍超微 品而存取該集中式核心網路資料庫。 8·如叫求項1之方法,產生該定製SDL進一步包含: 利用—耦接至該υτ之存取點,獲得該υτ 者 SDL; &lt; 田前 利用UT特定資料識別一與該卿關聯之本籍超 小區; 獲件用於該UT之一當前GE0之經更新的網路資訊;及 次利用該經更新之網路資訊及關於該本籍超微型小區之 貝料,動態地修改該當前SDL且產生該定製SDL。 9. 如π求項1之方法’進—步包含利用—巨集或超微型存 取點,經由無線(ΟΤΑ)發信號將該定製SDL推送至詨 UT。 ^ 10. 如请求項1之方法,進一步包含隨該定製SDL包括一在該 UT為一非超微型器件之情況下將該UT再導引至一非超 微型載波的參數。 U.如清求項1之方法’進一步包含隨該定製SDL包括一組鄰 近超微型小區ID,以在該υτ處於一多載波環境中或為— 具超微型能力之UT之情況下,促進在多個載波上搜尋相 鄰超微型小區。 12. —種促進對一行動網路之遠端存取的裝置,其包含: 135136.doc 200935932 通l處理器,其經由一與—服務於該υτ之基地台 (BS)之·貝料鏈路或一與該111之無線鏈路,獲得一。丁特 定資訊; 資料剖析器,其利用該υτ特定資訊判定該υτ之存 取能力;及 SDL模組,其基於該口丁之該等存取能力產生一用 於在全異類型之存取點之間進行選擇的定製51^。 13·如請求項12之裝置,其中該SDL模組組態該定製s〇l以 包括關於一與該UT相關聯之本籍超微型小區的資料。 14. 如凊求項13之裝置,進一步包含一資料介面,該資料介 面耦接i營運商之核心網路以獲得該本籍超微型小區 貝料,或耦接至網際網路以自一耦接至該υτ之超微型小 區獲得此資料。 15. 如請求項12之裝置,該飢模組至少部分基於存取點類 型而為該等全異類型之存取點指定一相對優先權。 ❿16·如請求項12之裝置,進—步包含―資料庫,其維護用於 該UT之用戶資料、識別該仍之一或多個本籍超微型小 區的資料,及視情況由該等本籍超微型小區利用之頻 道0 ' I7·如請求項16之裝置,其中該用戶資料係用於建立一用於 該UT之本籍GEO。 18.如請求項12之裝置,其中該SDL模組: 界定該υτ之-本籍超微型小區位於其中之用於該υτ 之一本籍GEO ;及 135136.doc 200935932 組態該定製SDL ’以在該UT處於該本籍geo内之情況 下為超微型小區建立一高相對優先權。 1 9.如凊求項12之裝置’其中該SDL模組包括在該定製SDL 内識別一或多個本籍超微型小區的資料’該識別資料係 自以下各者獲得: 網路資料庫,其包含用於一超微型小區網路之超微 型ID資料; 行動營運商之本籍位置暫存器,其包含與一超微型 訂閱相關聯之超微型小區ID資料;或 一在該UT處起源之無線訊息。 20.如明求項12之裝置,其中該SDL模組組態該定製 以在該υτ並不處於一本籍GE〇内或該υτ為一非超微型 器件之情況下,為巨集小區建立一高相對優先權。 21 ·如凊求項12之裝置’其中該SDL模組包含一經組態以產 生該定製SDL之無線服務供應函式(〇TAF)模組。 22_如”月求項12之裝置’進一步包含一啟動組態模組,該啟 動組態模組產生-用於藉由一本籍超微型小區對該仍之 初始供應的啟動SDL ’該啟動SDL包含一啟動小區⑴或 啟動頻道。 23. -種餘態以促行動網路之遠端存取的裝置,其 包含: 用於獲得一UT特定資訊的構件; 用於利用該听特定資訊判定該UT之存取能力的構 件;及 135136.doc 200935932 用於基於該υτ之該等存取能力產生一用於在全異類型 之存取點之間進行選擇之定製SDL的構件。 24. —種經組態以促進對一行動網路之遠端存取的處理器, 其包含: 一第一模組,其經組態以獲得一 UT特定資訊; • 一第二模組,其經組態以利用該UT特定資訊判定該 . UT之存取能力;及 一第三模組,其經組態以基於該UT之該等存取能力產 ® 生一用於在全異類型之存取點之間進行選擇的定製 SDL。 25. —種電腦程式產品,其包含: 一電腦可讀媒體,其包含: 一第一組程式碼,用於使一電腦獲得一 UT特定資 訊; 一第二組程式碼,用於使該電腦利用該UT特定資訊 判定該UT之存取能力;及 一第三組程式碼,用於使該電腦基於該UT之該等存 取能力產生一用於在全異類型之存取點之間進行選擇的 - 定製SDL。 26. —種用於選擇一對一行動網路之存取點的方法,其包 含: 將一包含一 UT ID之網路註冊請求提交至該行動網路 之一小區; 獲得一針對該UT ID而組態之定製SDL,該定製SDL基 135136.doc 200935932 於該υτ之一特性挂_ + 寸性建立一較佳類型之存取點;及 在〇丨區不為一較佳小區或為一非較佳小區之情況 下利用該疋製SDL搜尋鄰近小區或頻道。 如明求項26之方法’利用該定製SDL搜尋鄰近小區進一 包3匹配該小區之一節點瓜與該定製s〇L中之一節點 ID,以判定該小區是較佳的還是非較佳的。 28. 如„月求項26之方法,進一步包含識別該小區之一 及 比較該GEO與該定製SDL以判定該小區是較佳的還是非 較佳的 29. 如請求項28之方法,識別該GE〇進一步包含分析一由該 小區傳輸之信號或判定該UT之一位置。 30. 如請求項28之方法,進一步包含基於該比較判定該小區 之該GEO是否為一與該υτ相關聯之本籍ge〇。 31. 如叫求項26之方法,進一步包含在未於一臨限時間内識 別到該較佳小區之情況下耦接至該非較佳小區。 32. 如凊求項31之方法,進一步包含在耦接至該非較佳小區 之同時,週期性地搜尋該較佳小區。 33. 如請求項26之方法,獲得該定製SDL進一步包含將識別 一本籍GE0或一本籍超微型小區之資料提交至該行動網 路。 34·如請求項26之方法,其中該UT之該特性為一存取類型特 性。 35.如請求項26之方法,進一步包含自該行動網路之該小區 獲得一基於網路拓撲改變之經更新的SDL。 135136.doc -6- 200935932 36. 如請求項26之方法,進一步包含利用一行動用戶識別符 (MSI)、國際行動用戶識別符(IMSI)、電子序號(ESN)或 一器件編號(DN)或其一組合作為該UT ID。 37. —種經組態以用於選擇一對一行動網路之存取點的UT, 其包含: 一通信處理器,其將一包含一 UT ID之網路註冊請求 提交至該行動網路之一小區; 一接收器,其獲得一針對該UT ID而組態之定製 SDL,該定製SDL基於該UT之一特性建立一較佳類型之 存取點;及 一基地台再選擇模組,其在該小區不為一較佳小區或 為一非較佳小區之情況下,利用該定製SDL搜尋鄰近小 區。 38. 如請求項37之UT,其中該基地台再選擇模組匹配該小區 之一節點ID與該定製SDL中之一節點ID,以判定該小區 是較佳的還是非較佳的。 39. 如請求項37之UT,其中該基地台再選擇模組識別該小區 之一 GEO並比較該GEO與該定製SDL,以判定該小區是 較佳的還是非較佳的。 40. 如請求項39之UT,進一步包含一信號分析模組,該信號 分析模組藉由分析一由該小區傳輸之信號而識別該 GEO。 41. 如請求項39之UT,其中該基地台再選擇模組基於該比較 而判定該小區之該GEO是否為一與該UT相關聯之本籍 135136.doc 200935932 GE〇 〇 42.如吻求項37iUT,其中該基地台再選擇模組在未於一臨 限時間内識別到該較佳小區之情況下耦接至該非較佳小 區0 θ求項42之UT,其中該基地台再選擇模組在耦接至該 非較佳小區之同時,週期性地搜尋該較佳小區。 44.如叫求項37iUT,其中該通信處理器將識別一本籍 ❹ 或一本籍超微型小區之資料提交至該行動網路。 月长項3 7之UT,其中該υτ之該特性為一超微型能力 或超微型訂閱資訊。 46. 如4求項37之町,其中該接收器自該行動網路之該小區 獲得—基於網路拓撲改變之經更新的SDL。 47. 如請求項37之υτ,其中該υΤ ID包含一 MSI、msi、 ESN或該υτ之一 DN或其一組合。 48. -種經組態以詩選擇一對—行動網路之存取點的裝 • S ’其包含: 用於將一包含一 UT m之網路註冊請求提交至該行動 網路之一小區的構件; 用於獲得—針對該UT ID而組態、之定製肌的構件, 該定製SDL基於該UT之一特性建立—較佳類型之存取 點;及 用於在該小區不為一較佳小區或為一非較佳小區之情 況下利用該定製SDL搜尋鄰近小區的構件。 49. -種經組態以在一行動網路之存取點中進行選擇的處理 135136.doc 200935932 器,其包含: UT ID之網路註冊請求提 一第一模組,其將一包含一 交至該行動網路之一小區; 一第二模組,其獲得一針對該UT m而組態之定製 SDL,該定製SDL基於該UT之—特性建立一較佳類型之 存取點;及 一第三模組,其在該小區不為一較佳小區或為—非較 佳小區之情況下,利用該定製SDL搜尋鄰近小區。200935932 X. Patent Application Range: 1. A method for facilitating remote access to a mobile network, comprising: obtaining a user terminal (υτ) specific information; determining the access of the UT by using the UT specific information Capabilities; and based on the access capabilities of the UT, a custom system decision list (SDL) for selecting between disparate types of access points is generated. 2. The method of claim 1, further comprising identifying, within the customized sdl, identification data for one of the UT's home microcells. β 3 · As requested by the method, the step-by-step includes specifying the relative priority of the individual access points based, at least in part, on the type of access point. 4. The method of claim 1, further comprising: defining or obtaining one of the UT's home micro-cells located in one of the geographic regions of the home (GEO); and providing in the mandatory SDL when the UT is in the home GE Multiple priority levels for different access point priorities are established within and outside of the home GE0. 5. The method of claim 1, further comprising: in the custom sdl: when the υτ is located in a ge〇 containing the home micro-cell, the cell will be a cell or a channel Established as preferred; or when the UT is not within the GE〇 containing the home micro-cell, it is preferred to establish a cell ID or channel of the macro cell. 6. If requested by the requester, obtaining the 特定τ specific information includes receiving the UT's -ID, and using the at least one of the following to operate the Lu Hai information: 135136.doc 200935932 Network Operator a database; or a centralized core network database. The method of i-to-item 6 further includes accessing the centralized core network repository based on a user authorized to use the == cell or according to the home ultra-microware associated with the UT. 8. The method of claim 1, wherein generating the customized SDL further comprises: utilizing an access point coupled to the υτ to obtain the υτ SDL; &lt; using the UT specific data to identify a The super-community of the home; the obtained piece of the updated network information of the current GE0 of the UT; and the use of the updated network information and the information about the home micro-cell, dynamically modifying the current SDL And the custom SDL is generated. 9. The method of step π of item 1 includes the use of a macro or a pico access point to signal the custom SDL to the UT via a wireless (ΟΤΑ) signal. ^ 10. The method of claim 1, further comprising the step of including, by the custom SDL, a parameter that redirects the UT to a non-subminiature carrier if the UT is a non-subminiature device. U. The method of claim 1, further comprising including a set of neighboring picocell IDs with the custom SDL to facilitate the υτ in a multi-carrier environment or a UT with ultra-micro capabilities Search for neighboring picocells on multiple carriers. 12. An apparatus for facilitating remote access to a mobile network, comprising: 135136.doc 200935932 a processor that passes through a base station (BS) of the υτ A road or a wireless link with the 111 obtains one. a data profiler that uses the 特定τ specific information to determine the access capability of the υτ; and an SDL module that generates an access point for the disparate type based on the access capabilities of the sputum Customize 51^ between the choices. 13. The device of claim 12, wherein the SDL module configures the customization to include information about a home microcell associated with the UT. 14. The device of claim 13, further comprising a data interface coupled to the i-operator's core network to obtain the home micro-cell material, or coupled to the Internet for self-coupling This information is obtained from the ultra-micro cell of the υτ. 15. The device of claim 12, wherein the hungry module assigns a relative priority to the access points of the disparate types based at least in part on the type of access point. ❿16. The device of claim 12, further comprising: a database for maintaining user data for the UT, identifying one or more of the home micro-cells, and, as the case may be, The channel used by the micro cell is 0 'I7. The device of claim 16, wherein the user profile is used to establish a home GEO for the UT. 18. The apparatus of claim 12, wherein the SDL module: defines the υτ--the home micro-cell is located therein for the one of the υτ, and the 135136.doc 200935932 configures the customized SDL' The UT is in the home geo context to establish a high relative priority for the femto cell. 1 9. The device of claim 12, wherein the SDL module includes data identifying one or more home micro-cells within the customized SDL. The identification data is obtained from: a network database, It includes ultra-micro ID data for an ultra-micro cell network; a mobile operator's home location register containing the ultra-micro cell ID data associated with a pico subscription; or a originating at the UT Wireless message. 20. The apparatus of claim 12, wherein the SDL module configures the customization to establish a macrocell if the υτ is not in a local GE or the υτ is a non-subminiature device A high relative priority. 21. The device of claim 12 wherein the SDL module includes a wireless service provisioning function (〇TAF) module configured to generate the customized SDL. 22_ such as "Monthly Item 12 device" further includes a startup configuration module, the startup configuration module is generated - for starting the SDL by the initial micro-supply of a home micro-cell, the startup SDL Include a boot cell (1) or a boot channel. 23. A device for remoting remote access of a mobile network, comprising: means for obtaining a UT specific information; A component of the access capability of the UT; and 135136.doc 200935932 for generating, based on the access capabilities of the υτ, a component of a custom SDL for selecting between disparate types of access points. A processor configured to facilitate remote access to a mobile network, comprising: a first module configured to obtain a UT specific information; • a second module grouped State to determine the access capability of the .UT using the UT specific information; and a third module configured to access the disparity type based on the access capabilities of the UT Custom SDL to choose between points. 25. A computer program The computer includes: a computer readable medium comprising: a first set of code for causing a computer to obtain a UT specific information; and a second set of code for causing the computer to determine using the UT specific information The access capability of the UT; and a third set of code for causing the computer to generate a selection between disparate types of access points based on the access capabilities of the UT - custom SDL 26. A method for selecting an access point of a one-to-one mobile network, comprising: submitting a network registration request including a UT ID to a cell of the mobile network; obtaining a target for the UT ID-configured custom SDL, the custom SDL base 135136.doc 200935932 establishes a preferred type of access point in one of the characteristics of the υτ; and is not a better cell in the 〇丨 area Or, in the case of a non-preferred cell, use the SDL to search for a neighboring cell or channel. The method of claim 26 is to use the customized SDL to search for a neighboring cell to enter a packet 3 to match one of the cells of the cell. One node ID in s〇L to determine the cell Preferably, the method of Month 26 further comprises identifying one of the cells and comparing the GEO with the customized SDL to determine whether the cell is preferred or not. The method of claim 28, identifying the GE further comprises analyzing a signal transmitted by the cell or determining a location of the UT. 30. The method of claim 28, further comprising determining, based on the comparison, whether the GEO of the cell is a home ge associated with the υτ. 31. The method of claim 26, further comprising coupling to the non-preferred cell if the preferred cell is not identified within a threshold time. 32. The method of claim 31, further comprising periodically searching for the preferred cell while being coupled to the non-preferred cell. 33. The method of claim 26, wherein obtaining the customized SDL further comprises submitting information identifying a home GE0 or a home micro-cell to the mobile network. 34. The method of claim 26, wherein the characteristic of the UT is an access type characteristic. 35. The method of claim 26, further comprising obtaining, from the cell of the mobile network, an updated SDL based on a network topology change. 135136.doc -6- 200935932 36. The method of claim 26, further comprising utilizing an Action User Identifier (MSI), an International Mobile Subscriber Identity (IMSI), an Electronic Serial Number (ESN), or a Part Number (DN) or One of the combinations is the UT ID. 37. A UT configured to select an access point of a one-to-one mobile network, the method comprising: a communications processor that submits a network registration request including a UT ID to the mobile network a cell; a receiver that obtains a customized SDL configured for the UT ID, the custom SDL establishing a preferred type of access point based on a characteristic of the UT; and a base station reselection mode A group that uses the customized SDL to search for neighboring cells if the cell is not a preferred cell or a non-preferred cell. 38. The UT of claim 37, wherein the base station reselection module matches one of the node IDs of the cell with one of the node IDs of the customized SDL to determine whether the cell is preferred or not. 39. The UT of claim 37, wherein the base station reselection module identifies one of the cells GEO and compares the GEO to the customized SDL to determine whether the cell is preferred or not. 40. The UT of claim 39, further comprising a signal analysis module that identifies the GEO by analyzing a signal transmitted by the cell. 41. The UT of claim 39, wherein the base station reselection module determines whether the GEO of the cell is a home associated with the UT based on the comparison 135136.doc 200935932 GE〇〇42. 37iUT, wherein the base station reselection module is coupled to the UT of the non-better cell 0 θ claim 42 if the preferred cell is not identified within a threshold time, wherein the base station reselects the module The preferred cell is periodically searched while being coupled to the non-preferred cell. 44. The request 37iUT, wherein the communication processor submits data identifying a home or a home micro-cell to the mobile network. The monthly length of the 7 UT, where the characteristic of the υτ is an ultra-micro capability or ultra-micro subscription information. 46. The method of claim 37, wherein the receiver obtains from the cell of the mobile network - an updated SDL based on a network topology change. 47. The υτ of claim 37, wherein the υΤ ID comprises an MSI, an msi, an ESN, or one of the DNs or a combination thereof. 48. - configured to select a pair of poems - the access point of the mobile network • S 'includes: for submitting a network registration request containing a UT m to a cell of the mobile network Means for obtaining - custom muscles configured for the UT ID, the custom SDL being established based on one of the characteristics of the UT - a preferred type of access point; and for not being used in the cell A component of the neighboring cell is searched using the customized SDL in the case of a preferred cell or a non-preferred cell. 49. A process configured to select a access point in a mobile network 135136.doc 200935932, comprising: a UT ID network registration request to provide a first module, which includes one Delivered to a cell of the mobile network; a second module that obtains a customized SDL configured for the UT m, the custom SDL establishing a preferred type of access point based on the characteristics of the UT And a third module, which uses the customized SDL to search for neighboring cells if the cell is not a preferred cell or a non-preferred cell. 5 0_ —種電腦程式產品,其包含: 一電腦可讀媒體,其包含: 一第一組程式碼,用於使一電腦將一包含一 UT 之網路註冊請求提交至該行動網路之一小區; 一第二組程式碼,用於使該電腦獲得一針對該υτ ID而組態之定製SDL,該定製SDL基於該UT之一特性建 立一較佳類型之存取點;及 第二組程式碼,用於使該電腦在該小區不為—較 佳小區或為一非較佳小區之情況下’利用該定製SDL搜 尋鄰近小區。 135136.docA computer program product, comprising: a computer readable medium, comprising: a first set of code for causing a computer to submit a network registration request including a UT to one of the mobile networks a second set of code for causing the computer to obtain a customized SDL configured for the υτ ID, the customized SDL establishing a preferred type of access point based on a characteristic of the UT; The two sets of code are used to enable the computer to search for neighboring cells by using the customized SDL if the cell is not a preferred cell or a non-preferred cell. 135136.doc
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